#316 Brian Keating - The First Object Ever Found From Another Solar System
236m 13s
Keskustelussa käsitellään monia aiheita. Aluksi Shannon Maldonado kertoo Shopify-alustan käytöstä yrityksessään, joka myy käsintehtyjä teetä. Hän korostaa alustan helppokäyttöisyyttä ja sen tarjoamia työkaluja, kuten varastonhallintaa, jotka mahdollistavat liiketoiminnan ilman teknistä osaamista. Tämän jälkeen Brian Keating, fyysikko ja professori, jakaa kokemuksiaan Etelämantereesta, jossa hän on rakentanut teleskooppeja tutkiakseen maailmankaikkeuden alkua. Hän keskustelee UFOista ja hallituksen salailusta, mutta suhtautuu skeptisesti väitteisiin ja korostaa tieteellisen menetelmän tärkeyttä. Keating kertoo myös henkilökohtaisen tarinansa isästään, joka hylkäsi hänet lapsena, ja siitä, miten tämä vaikutti hänen pyrkimykseensä voittaa Nobel-palkinto. Hän kannustaa vanhempia hankkimaan lapsilleen teleskoopin, koska se voi herättää uteliaisuuden ja tieteellisen ajattelun. Lisäksi hän tarjoaa meteoriitteja sotilashenkilöstölle ja korostaa tieteen ja teknologian merkitystä sekä historiassa että nykypäivänä.
Olen Shannon Maldonado, käsintehtyjä artesaanitua teita myyvän jaujialahjakaupan perustaja. Valitsin Shopify, koska alustoja testatessani totesin sen ehdottomasti yhdeksi helpokäyttöisimmistä alustoista. Minulla oli tärkeää pohtia kehittymistämme tulevaisuudessa. Kaikki myyntiin tarvittavat työkalut, kuten varaston suunnittelu ovat kätevästi dashboardissa. Aloita ilmainen kokeilu Shopify piste komsi vustolla. Verustin pyöräilyvää teitä valmistavan ornotin vuonna 2013. Mielestäni parasta Shopify saan se, että voimme harjoittaa liiketoimintaa ilman teknistä osaamista. Voimme hallinoida yrityksen taustajaristelemiä ja frontendia sekä myyden verkossa, vaivatta. Jos Shopify olisi pyöräilyvaruste, se olisi mielestäni itse polkupyörä. Sillä asiat hoidetaan ja meidän liiketoiminta me hoituu Shopify'ssa. [Musiikkia] Bryan Keating. Welcoma on seuraavalla. Täällä on harjoittaa työkalut. Täällä on harjoittaa liiketoiminta. Sä oon oon, että se on jotain.
It's not a zero-sum game. In fact, it's a losing battle. We know we're going to lose against Mother Nature, but don't make it worse. Don't put up false flags. Don't try to do the sionps, SCionps, and let us have access to it. The universe, Abby Loeb loves to say, the sky's not classifying. I say physics is not classifying. Love that. You familiar with Polymarket? Yeah, of course. Polymarket only gives a 14% chance that the U.S. will confirm that aliens exist before 2027. Did you see the post that Trump did the other day with the alien? What is that? You know, he's a master manipulator. He's a master. I support what President Trump does in many ways, which makes me kind of a unicorn and academia. Does that mean he does everything right? Does that mean like, you know, it couldn't ever consider not voting for him? Do I think that he does things sometimes, in a in a callus and a cruel? Yeah, of course. Look, people always say to me as a sidebar, I'm sorry to go on a tangent so early in the conversation, but they say like, would you want your kid to be like President Trump? Isn't he like, oh, I have all these problems. I'm like, no, you know, I want my kid to be like, you know, I try to live a life for my sons to be like me. I try to live a life, but not be copies of me. I want them to be who they are, actualize their full potential like God has given them. I don't want them to be me. I don't want them to be a politician. I don't want them to be an Instagram influence. I don't want them to be you. I want them. I want to be the influence of my kid, not the president. I never look. Oh, John F Kennedy. I really want my kids to go, yeah, always got. I don't say that. I don't say, you know, I want my kid to be like Stephen Hawking. No, I don't know. Nobody. I want them to be replacement. Exactly. They're your ticket to the afterlife in reality, spirituality, and ideologically. I think that's what other gift could you have. And by the way, I like to say for people that don't have kids, a lot of my friends don't have kids. I'm sure, you know, the same number of people, you don't have to have kids yourself. A, you can adopt. B, you can, you can be a mentor. You know, it's a shame. The Catholic Church and Michael Jackson have given like real bad name to like men mentoring younger, younger kids. I think that's, I think it's a tragedy because I think what you need is more biological fathers and more ideological fathers. And you can be both, but you don't have to be both. Let's get back to aliens. Yeah, look. So Polly Marga gives a 14% chance that the US government confirms alien life or technology this year. $38 million in real money has traded on this. You've built telescopes at the South Pole looking for signals from the beginning of the universe as a physicist. What do those odds tell you? So one of the places I built a telescope is at the South Pole Antarctica. And I think that means I've been on a navy base that you haven't been on the South Pole. That means you've been on on a navy base that I've not been on. And I've probably been on a plane, you know, put in my, the only ways I can, you know, say that I've done something Sean, Sean Ryan hasn't done is I've been, I might have been on a plane you've never been on in a military and LC 130 cargo plane. So it's a ski equipped cargo plane. The US doesn't export it. It's like the F 22 or so. I've never even seen one. It's a giant. It's the world's biggest ski plane. It is the coolest thing. It's a Steven 38. You want to Antarctica? I've been there twice. I spent months, months, months going on down there. So Antarctica is one of the most fascinating otherworldly, just like extraterrestrial kind of planet filled with some of the most hard-charging people outside of the military that you probably ever want to meet. People, it's over subscribe. So it's harder to get to the South Pole to work there as a cook than it is to get into Harvard University. There's so many people that want to work there that be there. They love the isolation. They love the desolation. It's like the movie Star Wars or the Ice Planet Hoth covered over, frozen over in isolation desolation sounds like my dream place. For me, it's a nightmare. Yeah, for you, it's great. I love, I love getting there. I love having been there. I hate being there. You love getting there? What's that like a 25 hour plane ride? It's take seven days. Yeah, from San Diego. Holy crazy. It's crazy. Or you can take two and a half weeks by boat across the world Southern Ocean, which is the most dangerous and kind of violent scene. I get seasick. I go on to stand up paddleboard. I get seasick. I'm not taking the boat ride. So you get there, you go from San Diego, fly to LAX. You fly from LAX to either Australia or to the North Island of New Zealand, to Auckland, New Zealand. That takes 14 hours, whatever flight. Then you get there, then you have to take another flight to get from there to Christchurch, New Zealand. So on the South Island of New Zealand, New Zealand is where they fill the Lord of the Rings. It's like Switzerland plus the tropics, it's an incredible beautiful place. And then you get there in the US has carved out an army base, a naval base, and a provisioning center from this place called Christchurch. And the reason that they are there is it's where the historic explorers like Rold Aminson, who's the first man to reach the South Pole, and Robert Scott, who is a British team. They were in a race shong. Every bit as competitive as the Cold War space race to get to the moon first. This battle in 1911 and 1912 was every bit as intense geopolitically national pride scientifically. It was the last content. No one had ever seen Antarctica. You know, and Antarctica was discovered. And Antarctica was discovered after the planet Uranus was discovered. You found a freaking planet before we went to the world's seventh continent. It's a continent. Wow, I did not know that. Yeah, it's an actual continent, which means unlike the North Pole. If you go to the North Pole, you've seen that where the submarines go up through there. There's no land at the North Pole. If you go to the South Pole, you dig down through 9,500 feet of ice, you hit rock. That means it's a continent. So it's one of Earth's seven continents. It has a population right now as we're speaking. It's winter in Antarctica, or it's starting to be, you know, the fall. It's going into winter. There's we, you know, kind of around spring going into summer in the northern hemisphere. There's only about 800 people on the whole continent. Wow. Once again, this sounds like my dream place. Yeah, you got a 200 mile shooting range you can go out to. That means everybody there has to have a specific job and has to be very fucking good at it. There's no slackers. That's right. That's why I like it. There's no slackers. You can't get the first of all, you need a psychological exam if you're going to be there. You can't, because there's no doctors there. There's no dentists there. You, if you have even a 1% chance that you're going to need your molars removed before you go to Antarctica, they force you to pull them out. Okay, because there's no dentists there. Can you imagine the horrific pain that you could possibly have if you were at the South Pole? No doctors, no dentists, no x-rays, nothing, nothing you could possibly save your life and you get a toothache. So they have to, and it costs $100,000 for each person to get down there. So the US takes it very seriously. We go down these ski, equip cargo planes. We leave from Christchurch on a C-17 if you're lucky. If you're unlucky, you get a C-130 again, which is half the speed. And they can only get provisions in or out of there about three months of the year. So the station opens up in November, which is beginning of their spring going into their summertime. And then it ends in February 15th and it's shown if you're not out, by, oops, sorry, if you're not out by February 15th, you're there until November. You're not going anywhere. So it's an incredible environment. And it's dark, by the way, it's dark pitch black three months of the year. I've been thinking a lot about this lately. We track everything in our lives, our workouts, our sleep, our business metrics. When it comes to our actual health, most of us are just guessing. And that never really made sense to me. And I think we've all had that experience where you go in, get checked out, and leave without any real clarity. No real breakdown of what's going on or what to actually do next. That's why I'm really interested in what super power is doing. It's one simple set of lab tests, but you're getting data on over 100 biomarkers. So now you can actually understand what's going on with your body from hormones to metabolism to vitamin levels and more. And for me, that's the biggest thing. I'm always wondering, what should I be doing? What supplements make sense? How to adjust my diet? How to optimize performance? And instead of guessing, super power gives you a real plan based on your data. It also tracks everything over time. So you can see progress year after year and not just start over every time. Make this the year you stop guessing about your health with super power. For a limited time, our listeners get $20 off to unlock their new health intelligence head over to superpower.com and use code srs for $20 off your membership. That's code srs. And after you sign up, the last how you heard about super power. Do me a favor if you could and tell them the Sean Ryan show sent you to support the show. What's security like? So I actually had a friend. There is one gun down there. It's not there is one gun down there. There's a 45 caliber 1911. It's kept in a safe and there's a station master who's sometimes a scientist. I knew the station master who was a scientist the year I was there. And they they have security because some people have gone literally crazy there as you might expect, right? Complete isolation. You know why? I plain can't land there. So if if if a C-130 were to land there in the middle of winter, it gets down to -100.
a hundred degrees Fahrenheit, okay? So that's 300 degrees below the boiling point of water. So they actually have a sauna at the South Pole, that gets up to 212, almost degrees, Fahrenheit. And then the coldest day of the year is usually in July. They go outside and they run around naked around the South Pole. It's like a barber pole, just like you see in, you know, like Santa would have or whatever. It's a barber pole that marks the geographic axis on which the earth is spinning, okay? So you run around, it's called the 300 degree club. You run around every time zone, and you're running in negative delta temperature of 300 degrees Fahrenheit. Okay, so if a plane were to land there, if an LC-130 were to land there, the hydraulic fluid and JPA freezes at like negative 50 or something like that. So what would happen is that all the fuel lines would explode and you'd have to, the plane would be ruined. You couldn't never use that plane again. So they've never done, they've done air drops. There was a doctor there who got stranded, Jerry Nielsen. And she was the on-site physician, but that's just for like, you know, cuts and scrapes and stuff like that. She diagnosed a lump, and she found that, she had this lump in her breast. And they had a drop, they found out diagnosed it. She dropped the biopsy kit. She tested it, she had breast cancer on stage two or three. Then they dropped chemotherapy. So they had parachutes at night, pitch black from a C-17. She ended up living a few more years after that. She wrote in a memoir about it. But it's the most isolated place on earth. Literally, there's about a thousand people in the entire continental U.S. Just imagine how far you'd have to go until you meet again. For people like you, you probably don't know. - Sounds amazing. - You just catch up on your knees. - You see where we're at, we're out in the woods. - I know. - Yeah. - Yeah, exactly. - Sounds incredible. - If you heard of these, if you heard of these crafts that people think come out of the water from within the earth. - Yeah, yeah. What do you think about that? - Well, I've seen some stuff from this gentleman, Luella Zondo. I don't know if you've had Luella in the podcast. - I have Luella. - Yeah. So he had this book, came out a couple of years ago, imminent. I try to have him on. Look, I take a skeptical view. It's like, when you were a kid, I'm Jewish, but I actually grew up Catholic and it's a long story. But remember when Christmas would come and you'd be so excited. You just knew your mom was going to your dad. It was going to get you that racetrack or that RC truck or that 22 or whatever you're going to get. Like you just knew. And then the next day shows up, oh, thanks mom, a pair of slacks. Like, oh, you know that feeling of being let down? - You've had it, right? I've had it. That's the way. - I was just going to ask if you missed Christmas, maybe not, huh? (laughing) - We have enough holidays as it is. Yeah, so we are in that same situation. We're promised disclosure. We're promised us, we're going to be groundbreaking. Literally yesterday, Congresswoman Luna, Birchette, a lot of people you've talked to, a lot of people you know. What's coming next, it's always what's coming next. It reminds me of like nuclear fusion. Nuclear fusion is said to be the power source of the future shown and it always will be. In other words, we're just not converging on this stuff. Why do you think we're not? We can go, we can do eight hours on this if you want, but I'll tell you, I think there's a bunch of different things. I don't actually think the Epstein file distraction from the Iran war. I don't think any of that is really pertinent A, because a lot of us surfaced in 2017, thanks to Tom DeLong and to the Star's Academy and people that, you might have interviewed. I talked to Tom DeLong and Jim Semi-Van, who's a CIA operator at one point. And the challenge is you have all sorts of extremely rich, potential scientific content in a very low information environment in an extremely low trust environment. In other words, you've talked to people, you've talked to Ryan Graves of F-18, okay. I've talked to him. I actually talked to him with one of his wingmen whose friend of mine is a naval veteran at F-18 pilot, just like Ryan. And you talk about it. I would say most of the stories that I've heard and even people like David Grush, I respect these people, but I have yet to hear them say, here's the physical evidence. Sean, if these things. - They never go the full distance. - They never produce the evidence. A lot of it is. - They're not in human biologics. - Yeah, well that could be a fucking deer carcass on the side of the road. - Right. - I'm not fucking around, I'm being serious. - 100% right? - If you're gonna go, why aren't we going the full distance? Like you're not a fucking whistleblower. - Exactly. - Bringing up bullshit. - I'm planning to be fucking nothing. - I can't say that, 'cause I don't have the courage to join. I wanted to join the military. I wanted to go into the Air Force. My stepfather was a fighter pilot in Vietnam and a KC-135 StratoTanker pilot. I wanted to do it, but you know, discovered girls. I'm like, I don't know if I can handle it. I want to be an F-14 pilot, 'cause that's when Top Gun came out when I was a kid, and then my stepfather's like, you know, they say everyone wants to be a cowboy, but no one wants to ride the range. You know, like being on the boat, like my friend Ariel Kleinerman or like Ryan Graves. Sorry, I just didn't have it. I wanted to study the stars. I wanted to not miss that opportunity. It's kind of what I'm good at. But, on the other hand, this stuff is so interesting, and yet I keep hearing things like, you know, I heard from somebody, or you know, David Grosch. I can't, you know, these are the testimonies. I haven't seen them. They do their interdimensional beings, like Anna Congresswoman Luna. And I would say-- - It's a spirit. - It's a spirit, it's a guy. That's why I call these aliens of the gaps. It's a form of almost religious worship. Same as happening with AI, by the way. You see this worship, this power, these people involved. Look at the people involved in AI, Sean. What do you mean worship in AI? What are you talking about? - Worship in AI is creating a God in our image, okay? So just what God did with us. God created us from dirt. Adam and Hebrew means earth. It means dirt. God carved us out of earth, created. We can believe it literally. I'm out here to proselytize. I'm not gonna say anything about anyone who believes literally or doesn't believe literally. But the point is, God's that we create in our image, it's one of the oldest stories of all time. Tower of Babel. What was the fact, Tower of Babel? It wasn't just like, oh, we're gonna make this tower. It was humans develop technology. They created the first composite building material with straw with earth with dirt. That's a composite building material, like rebar and concrete, right? That's a comma. And they said, hey, we have technology now. We don't need to go on top of a mountain that God made. We can build the tower ourselves to go to the sky. Like a twin towers. We can do this. We're so powerful, we're so mighty, right? It's an old tale that we can compete with God. Why does the Bible, why does the Torah, the Old Testament say they did it? They want to fight with God. Why? 'Cause God had restricted the knowledge that humans beings were capable of having. Again, believe it or not. I really don't care if somebody believes the Torah, the Bible, the Old Testament, the New Testament. I don't care. The point is, these stories are eternal. They have something to teach us 3000 years ago. They can teach us stuff to this very day. The story that people are trying to do now is to create a God sort of in our image, right? That will do things to us supernatural, have capabilities, all powerful capabilities, all knowing the panopticon, know what you're doing, know what people trust, chat GPT, more than they trust their priest, rabbi or minister. You ask stuff to chat GPT. You probably wouldn't tell your wife. I know sometimes, like, why is my wife mad at me? I'm like, I ask her that. I know she's mad at me, right? So, the point is we're outsourcing that, which is ethereal, which is eternal. We're outsourcing that to little bricks of silicon and we're hoping, but we don't really know about the dangers within. With aliens, what is happening with aliens? That there's some external force that's being suppressed, that has the power to transform the world. I agree 100%. If this, if everything I said was going to be disclosed was disclosed, we would have to re-confront the new reality. I mean, we would be in an environment that is so un-stabilizing. It would make the Catholic church burning Bruno alive and imprisoning Galileo. All that thing, it would look like when my toddler goes into timeout, it would be almost, we would be so revolutionarily displaced. The question is, if we, if that's real, if these aliens exist and they have technological capabilities to travel light years across the galaxy, why is it that Congresswoman Luna or somebody else is capable of either suppressing it or disclosing it. I mean, yeah, I don't think, I don't think, I mean, are they capable of that? Well, I'll ask you the question. Are they pretending? You're in the, if you talk about aliens and you're in government, that's like an immediate PR boost. Boom. Your front page of every paper, every podcast, once talked to you, every news network once talked to you, it's a great PR stuff, right? Yeah. This episode's going to do good because we started it off talking about aliens. I guarantee you. Awesome. And because of me. And because of you. I'm joking, I'm joking. But, but I'm being serious. Like, it always hits. Yeah. It always hits. AI is another one. Nothing ever comes out. So, and there's an incentive to keep it that way, right? Because if you do disclose, I think there's something to what you're saying. I mean, I don't, I'm not, I'm not that interested in it anymore because nothing ever comes. There's no, there's never any breaking shit that comes out that's rip, you know, that it's, and there's nothing you can do about it anyways. But what I think that they, what I think might be going on is they've seen, you know, how much attention the subject matter demands, you know, when it's brought up. And so, it's become a tool, a useful tool for the US government. That's right. No, I agree with you. I guess here's the question I want want to ask you and and and a
Originally when I, you know, I actually think, I might have invited you on my podcast at one point to do a like a Veterans Day celebration. So anyway, at some point, I'd love for you to come on. When you come on, I'm gonna give you this, well, I'm gonna give this to you now because I probably don't know what we are. This is, it's not a Nobel Prize, but it is called the Keating Prize. It's a little bit arrogant, okay? It's for impossible imagination, okay? And it's got your name on the side of it. And it's 3D printed. And there's a replica of the monolith from the movie 2001, A Space Odyssey. 'Cause my podcast into the impossible is named after Sir Arthur C. Clark who wrote the book that 2001 A Space Odyssey is based on. So you're welcome. Yeah, thank you for all you do. And we're gonna play around with some other stuff now, so keep that handy that we'll go with that later on. So I wanna turn, you know, with your permission and forbearance, I wanna ask you a question because I can't ask, I've had, as I said, military, I've had operators on. Let me ask you a question. Some of the pilots who saw things, the Nimitz incident, the TikTok incident, Commander Fraver, Lieutenant Commander Alex Andy Trick, they claim they saw things, right? They got back to the boat. When they got back to the boat, they were basically described as being hazed, something like that. Teas mercilessly, they said it was bad for their career. David Fraver's testified about this. We could talk about the geometry of, you know, how they saw different things. But I don't ask you as an operator. If, I know people that have lost limbs to IEDs, okay? If you're on point, if you're going on patrol and one of your buddies says, I think I see this thing and it's unusual, it could be an IED or not, like, when you got back to camp, would you like tease that person? Or would you say, we should take this frickin' seriously? Yeah, you would say we should take this seriously. So what do you make of the fact that when they got back and threw out and Ryan Graves done a good job trying to combat this? But what do you make of the fellow people that should also be encountering these things and should be subject if they're just simple, prosaic, man-made, Chinese, made, whatever you want? They compose a danger of flight risk, right? For these aircraft that are operating at high, you know, velocities, right? What do you make of the fact that the fellow aviators, they're a equivalent of operators and teams, right? They were teasing them. I just psychologically, can you help me get through that? Well, I mean, I think the comparison that you brought up is a little unbalanced, I mean, in IED and the heyday of Iraq or Afghanistan, I mean, that was a, you would see multiple of those a day, very common, you know what I mean? Nobody would second guess that, I mean, they might second guess you, but they're not gonna make fun of you, you know? But I mean, it was just so prevalent that it was happening multiple times a day. You don't see UFOs popping in and out of the water and, you know, defying physics every day, every year, every decade, like you just don't, you know, if you see it, you're very, you're, you're, you're, you know, it's very rare, right? I can see like my brother, I'm three brothers, right? I can see them teasing the shit out of me, right? It's kind of like a ghost, right? Okay, you might tease somebody if they've seen a ghost, like, oh yeah, okay, you've seen a fucking ghost, right? But if that ghost could take out, you know, the intake on your F18, you know, you know, the Hornet, wouldn't you be a little bit, you know, like more interested in seeing if it's not teasing them, but actually let's, let's go to the encounters, like, - I'd be interested too. - As a professional, yeah. - Is a professional, I'd probably crack a little bit of a joke, you know what I mean? But I'd also be interested to hear what was going on. I mean, I mean, my own producer is the one that lobbed it into the log book. I mean, he was there when that shit happened. - Yeah. - But, yeah, so I'm not saying like, they should have been ridiculed or anything like that. - I know, absolutely. - But I also am saying is I could understand some heckling. - Okay. - You know, going on. - Right. - And then when you hear things, again, I'm a civilian, I encourage you to do stuff that you and your audience does, right? Although I do have some gifts for your audience that we're gonna talk about earlier on. So that's a cliffhanger, that's a retention device. (laughs) Another question when I turn, you know, the tables on the podcaster and ask you a question. In the context of me as a civilian, I'm told like, you know, keating, shut your mouth. These guys saw what they saw. You don't have the balls to strap on an F-18. You didn't serve in the Air Force intelligence like Grush. What should I say in those situations? It's true, you know, I'm a pilot, but I don't fly F-18s, I don't fly Sastas, right? But tell me, how should a civilian, you know, questioning what level of deference, what level of credulity should I just believe someone 'cause they strapped on a jet and I didn't have the balls to do it or, you know, help me walk me through that 'cause I get that a lot. Like you didn't have, you don't have the skills that he has and you don't have the fortitude to join. So you can't question them. Even though I'm like, "Well, I'm a physicist." Like I know about Flier, I know about Raider, I know about technology. I know how astronomy has always fed into technology for military applications first and foremost, but you're right, I'm not a military operator. So how do I as a civilian, you know, kind of navigate that castle? - I don't think any of that's even relevant. You didn't serve what the F-18s said have to do with aliens and UFOs, we're not talking about some tactical maneuver that they did and bomb somebody and you're second-guessing the tactics. - No, not at all. - They don't have any fucking experience with UFOs or aliens just like anybody else. They saw some phenomena, right? So I mean, I think that's it's just, you know. - It's not what you're talking about. - Very well crafted defense mechanism, you know, to my opinion, but, or the fact that like, oh, they have a great hand-eye coordination where they have great, you know, this sniper knows, you know, how to do this and that. And like, they know about observing things in a high-threat environment and high speeds and kinetic, kinetic environments. You don't keep, you sit behind a chalkboard and teach, you know, quantum mechanics like nothing, there's nothing legit. - There's only ones that seem in what they're saying. - The only ones that seem to have an abundance of experience tracking UFOs in real time. Pretty much all been debunked and are full of shit. So, I mean, that's, you know, when it's a continuous thing, it's like, oh, there's the expert. Oh, shit, it got debunked again. But, I don't know, does that answer your question? - Yeah, I think it does, yeah. - Well, Brian, let me give you an introduction here. - Oh, yeah. - Way too far into this. Brian Keating, you are the chancellor's distinguished professor of physics at UC San Diego, the inventor of the BICEP telescope at the South Pole and the principal investigator of the Simon's Observatory. One of the largest cosmology experiments ever built. It's $100 million plus telescope array in chilies, I can't say this, Atamaka, Atamaka, Atakama, Atakama Desert and involving over 400 scientists from 40 institutions. You've raised approximately $200 million for your research, received the presidential early career award for scientists and engineers been elected to a fellow of the American Physical Society and been inducted into the International Aviation Hall of Fame as a 2022 Legend of Flight. You're the author of "Losing the Nobel Prize" ranked a best science book of the year by Science Friday. Physics today and Forbes and one of Amazon's editor's best nonfiction books of all time. And the host of the "Into the Impossible" podcast with over 500,000 subscribers where you interview scientific and cultural pioneers including 23 Nobel Prize winners is passed. Wow, it's passed, yes, that's impressive. You are licensed multi-engine turbine-rated commercial pilot who is lectured on six of seven continents, including Antarctica. And you arrive today with a replica of Galileo's 1609 military telescope, a Martian regallyath sample, and a 4.3 billion year old meteorite that you will send to 250 members of this audience with APO addresses. That's fucking awesome. Welcome to the show. Thanks, y'all. It's quite the intro. Yeah, better late than never. But you should hear what my mother-in-law says in her rebuttal to the introduction. Oh shit. Oh, man. And then before we get too far into it, I got a Patreon account. It's quite the community. There's the reason that I get to sit here with you today. Thank you. So they get the opportunity to ask every single guest a question. This is from Neil Embrocile, Jr. While most technologies to date have been used for space exploration, what are your thoughts on that same technology being used for the weaponization of space? So one of the oldest partnerships in science is between astronomy and the military. Most people don't know about that, but the same types of technologies, of inventions, of calculations, of theory are exactly applicable in military situations. For example, the telescope, this replica telescope here, of Galileo's 1609 telescope. So Galileo didn't invent the telescope. [BLANK_AUDIO]
think, "Oh, he invented it." He actually kind of stole the idea and he sort of admits to it, but that's academia for you, you know, or used to kind of, you know, taking credit sometimes where credit meant not to be due. But what he did do is he kind of made it like 10X. I don't know, do you ever have a blackberry, you know, back in the day or Nokia, you know, kind of phone, right? The first kind of phones that did more than just, you know, send calls back and forth had early access to the internet. And you could do, you know, very crude browsing. And that's what made them really popular. But what made the smartphone really take off exponentially was that it was 10 to 100 times better than anything that came before. And so quantity has a quality all its own, creating something for the first time, like creating a telescope is one thing, but then improving it by a factor of 10, it's almost like it's a new invention. And that's what Galileo did. He didn't invent it. It's the most simple thing you can think about. It's got two lenses. It's got a lens over here. This is called the objective lens. This is the side that faces the object that you're looking for. And then this is called the eyepiece lens, another lens on the other side. This simple thing has about one inch diameter lens. And it can see everything that you could possibly see with the naked eye, but 10 times better. And that change in humanity's literal perspective on the universe changed the world, but it wouldn't have been possible without Galileo's improvement. And in fact, he not only improved it by the type of quality of the glass that he used, the lens material, the spacing of the material, he also did things that are kind of counterintuitive. You see Sean, the lens that's here is actually bigger than this brass disc that surrounds it. But the brass disc is actually crucial to the improvement because what the brass disc does is it focuses the fovea of your eye in the best part of the lens. If you had the whole lens exposed to the light, there's all sorts of artifacts of glints of glare. It's called ghosting. And those effects reduced the utility of the telescope. So Galileo counterintuitively said, let's take this telescope and make it smaller. It's called stopping down like an aperture and F stop on a camera. That actually restricts the light. That made it focus better. It was genius. No, I wouldn't have thought of that, right? Let's make this thing better by making it smaller. Like I said, nobody ever, you know, you always want bigger, better. But no, that made it, what would have made it worse. He made it better. The other thing that he did, which nobody really had done before, it's crazy, is put it on a tripod. He invented the tripod. And what do you get when you put an optic on top of a tripod Sean? The ability gets stability because the telescope is magnifying not only the object that you're looking at, but it's also magnifying the rotation of the earth. As we look at the stars, it's actually making it them go by faster, right? The stability made when you coupled the stability to the optic itself, you could now use this for military purposes. This became the first sniper rifle scope. This is the first optic ever made. Okay. It's a replica. And it's the real one. There's only one left and it's about, you know, a trillion dollars. I can't bring that for you. Maybe next time. But what was so useful about it is Galileo didn't use it for astronomy. That wasn't the first thing he used it for. He did for himself because that was what his passion was. The first night he invented this new improved version of it with the tripod, he looked at the moon. And the moon at that time was unknown territory. People had no idea what was on it, what it was made of, if there's life there, if it's totally different than the earth. And he looked at it and he saw, it looks perfectly smooth and circular to the eye. It has blotches on it. But, but he didn't know what those were. He looked at that and he saw the following. He saw mountains. He saw craters. He saw lava flows. And he said, wait a second, people are telling us for 2,000 years, it's perfect. It's a crystalline sphere. This isn't perfect. It's riddled with holes and craters and marks and mountain ranges and riff valleys and craters and canyons. It's kind of like the earth. That was the first unification of an extraterrestrial object with the earth. That was amazing. He then looked at other objects and wrote these all in his notebook. And he kept them all in a span of 3 months. He discovered the following things. The moon has craters. The moon has rivers. Looks like rivers to the eye. It looks like it has oceans on it. It doesn't have flowing water anymore or ever did really. It has valleys, canyons, has vast plains upon it. He saw all that. That was one night. The next night, he saw the planet Venus goes through certain phases just like the moon. In other words, sometimes there's a crescent Venus. Sometimes there's a full Venus. Sometimes there's a waning crescent Venus. Sometimes there's no Venus and you can't see it. That must have meant that Venus was closer to the sun than the earth because that's the only way we get phases of the moon. Sometimes the moon is closer to the sun than it is to the earth. Then he discovered that the planet Saturn had these ears on it. He thought the planet Saturn, instead of now we know on the rings of Saturn, he couldn't resolve them with his first telescopes. But he saw that this extended oval shape to it and it blew his mind. He thought it was three planets touching each other. The last, the most insane thing that he ever did, in my opinion. Again, this is only just a few weeks in the winter January of 1610. It's just mind blowing. No one had ever done that before in history. Even though the telescope existed, no one thought to look at the sky because they didn't have the technology, the tripod. I'm getting to the question that was asked in just a second. He looked at the planet Jupiter. Jupiter is the biggest planet in our solar system and he saw it had all sorts of crazy structure to it. It had lines on it like atmospheric storms. It had this blotch on it, this red spot on it that seemed to be there every night that he would look on it. It was always accompanied by four stars. The four stars were always moving with respect to Jupiter and then Jupiter was moving with respect to the Earth. He was such a genius. He said the following. He said, "I think what I'm looking at is a miniature version of the solar system with the Sun replaced by Jupiter and the planets that orbit around the Sun, which is heretical to think back then, by the way. The planets that orbit around the Sun are orbiting around Jupiter." So, Jupiter is kind of like the Sun to this miniature solar system that we saw edge on like a disk. So, he saw these things moving back and forth, always around Jupiter, no matter where Jupiter was every time of the year that he could see it. And this is just mind blowing and that he raised to publish this. He published them under two months, which is like a record. He published this book called the Ciderius Nuncius, the Stary Messenger. And he didn't tell people how to build the telescope. He kept that classified, but he did go to Venice, which, you know, Italy was only a country, you know, in the modern sense, I think in the 1840s. Like it was unified. It was made up of like Florence and Tuscany and Venice, like they were disparate doges and kingdoms, right? So, he went to Venice. He shopped it around to different militaries. And he said, "Look guys, with this telescope, you can go on top of a tower in the Piazza de Saint Marco in Venice." I don't know if you've been to Venice. It's a wonderful place. You should go there, especially your Italian or Italian origin. So, you go on top of the tower in Venice. You can look out into the ocean and you can see in Lagoon, you can see a boat today that won't be here for three days. And that was like stealth, right? So, be like looking at the stealth bomber with a special device and you could take away the stealth of the stealth bomber. And so, this technology between astronomy, which was his main purpose in doing it intellectually, and then selling it to the military immediately to the Venetian government, gave them this huge advantage. They gave him like basically a stipend, tenure, made him like this court astronomer. And he immediately saw how military purposes could be the vehicle to make him wealthy. Because he was a real cool guy. He had, he was never married. He had kids out of wedlock. He had mistresses. He had brothers-in-law. He had people living with him, like students living with him. I can imagine living with my students. And he was just such a passionate educator. But at heart, he was like a military genius. And his first thing was to be like Merlin or, you know, Gandalf or something. He knew that astronomical discoveries, projectile motion, trajectories, things like that could immediately go from the realm of physics to being used for war. And the same thing is happening today to address the question directly. We have technologies. We have tools. We have telescopes. We have things that have been designed. One of the things that Avi Love spoke to you about, this object called umu-amua was the first extraterrestrial object discovered by humanity. It came from another solar system. We don't know where. We don't know when, but we know that it did not come from our solar system. How do we know that? It's velocity and it's orbit. It's not bound to the sun. And it comes, it travels at such hypervelocity that it came into our solar system in 2017 and left our solar system. And it's long gone for now. For right now, we can't really catch up with a rocket. But we know for sure it was there. It was discovered by an Air Force telescope. Not an astronaut. Not Avi Love looking through a telescope. It was discovered by an Air Force telescope on top of Haleakala, which is a mountain in Maui. So this purpose of that telescope was not to look for comments from other solar systems. That's serendipitous. That was accidental that we discovered. It's real purpose is looking for other things that are up there in space. And the best way to do that is to use the tools of physics, of astronomy. And that's why I keep saying, if you think that these UAPs defy the laws of physics, you would want to have as much
input from the physics community, not alienate them and they'll pun intended, not make them feel stupid or make them feel like they're just eggheads and they're just talking down to people and we know the truth and the government lied about COVID, Sean, you know the government lied about COVID, so you know that they're lying about aliens. - The government of the aliens have her lie. - Yeah. I love it. The government would never lie. They just have our best interest and always forever, they always have, right? I mean, even to Galileo, eventually, he ran a foul on the government because of these astronomical telescopes, because of the discoveries he made. Bruno ran a foul for the same Catholic government, which was the government of the time, the super power military undefeated champion of the world. He ran a foul because he suggested that life could have existed on other planets. Therefore, Jesus could not have possibly been able to visit all of these different planets according to the Catholic church at the time. And so they literally accused him of heresy, even though he was a, it was a, I believe he was a Jesuit or a Catholic priest. So they burned him alive at the stake as a warning. Do not defy with your science our laws of how the heavens go, because we know the Bible knows how they actually work. - Wow. - Wow. Have you looked at it? You know, do governments lie? Of course they do. Is there ever a reason I'd love your opinion? Like, at that time, saying that the earth orbited the sun would be, it would be like saying, you know, the lab leak of COVID, if you believe that, it would be like that on steroids. Like, does a government or should any entity have responsibility to avoid either mass panic as in the case of aliens or something like that? Or mass pandemics? In other words, do we need any kind of overarching government beneficial, we can debate if they ever could be beneficial? But in your opinion, is it important to have governments? And do they have a right to have secrecy? In other words, the steel man, what the people say that we have to keep this quiet, we can't disclose, trust me, bro. How do you view that as someone who's deeply involved? - Well, I think there's a starch difference between flat out lying and just not disclosing. You know, I think there's a line there, don't you? - I do, and I think that the government, you know, but I guess I'm asking, is there a more reason to lie? - If you lie to your people, now you're in a predicament like what we're saying right now, where I would say, the vast majority of people have no trust in any of our institutions or our government at all. Because they've been caught in so many fucking lies and nobody knows what to believe. Nobody even knows if these are lies. Well, a lot of them are lies, but you know, but there are, nobody knows about this alien shit yet. You know what I mean? For example, it's like, do we believe them? Why would we believe them? They've lied about so many other fucking things. They've lied about COVID. They've lied about Texas. They've lied about pretty much everything. You know, and so, you know, and now, I don't even know how they would begin to get the trust back in our institutions and our government. - You think I was that far gone? - I think it's pretty close. - Well, you know, I have this debate, you know, like I told you before we started recording my brother in law, Jim Brewer's, was a recon Marine. And I told him about some of the things that, you know, the people that have alien encounters have been reporting. And just, and he's like, well, we did, what it's called, Siri, like search, evade, rescue, seer training, seer training. He said, when we did that, he said, I got water boarded. You know, he's like, the government does stuff to us. And I'm convinced the government lies, you know, they lied to people that should have the deepest trust. And I don't understand how they expect that trust to be maintained. For example, pilots report things in the skies, right? One explanation is extraterrestrial craft visiting us from other dimensions, right? Within non-human biologics. Okay, that's a hypothesis, right? I'm a scientist, I can test hypothesis, given data, update my priors, update my hypothesis, iterate scientific method in action, right? Another hypothesis is, these are craft from the US, from adversarial nations, reporting things, doing things that we don't know about. For example, during World War II, there were operators of German U-boats. And the Germans had early radar systems. I don't know if most people know this, but there's the Manhattan Project. Everybody knows about that. The Oppenheimer movie, great movie. And I'm all for celebrating physicists. And it's great, it's very, you have a movie about a physicist who's doing good and not trying to kill everybody. But during the Manhattan Project, that gets a lot of attention because it created the atomic weapons that eventually, most people's opinions brought the end to the war in Japan. We were in a race against the Europeans, the Germans in particular, before they developed a nuclear weapon and dropped it on us, right? The Japanese weren't really in a danger of doing that. But the Germans had some of the best scientists of the time. The Heisenberg, an interesting, credible scientific, that's where quantum theory began and nuclear physics was first understood was in Europe. But there was a parallel effort that almost nobody knows about. And yet, you use it every day, if you're driving in a car, if you're flying in a plane, and it was radar. Radar was one of the most significant military advances of World War II, almost nobody knows about it. And it was also created by physicists. So that two of the most decisive technological enabling things were invented by astronomers and physicists operating in World War II and slightly before. Radar was particularly valuable. Because it was much more deployable than the nuclear technology of Los Alamos and then leading to the bombs, right? That took this huge effort, trillion dollars and today's dollars. Radar was much more accessible. Any country could develop it. But at that time, there was also an effort to do counter radar. You can't have counter nuclear weapons. I guess you could shoot them down with a patriot missile. But that doesn't really stop the process of nuclear detonation, right? But you could actually counter the radar with jamming, with stealth. All those things were invented in the 1940s, some of whom were invented by colleagues of my colleagues who were still alive in this generation, essentially. And one of them was a name-- a physicist by the name of Louis Alvarez. Have you ever heard the hypothesis that the dinosaurs were killed by a meteor impact in the Yucatan Peninsula 66 million years ago? So speaking, because I am an absent minded professor, so I will forget. So I brought some meteors here, OK? So these are honest-to-goodness fragments of the early solar system that are older than the Earth. These are 4.3 billion years old. These are found in Argentina. So this one's new. And I brought some more. How old is this? 4.3 billion years old. The Earth is about 4.2 billion years old. This material, it's kind of dense, right? It's pretty heavy. It's also magnetic. Here's a compass. I'm going to do Mr. Wizard with you today, Sean. Here's a compass, magnetic compass. Put it next to there, and maybe show the camera what happens to it. Well, I don't know if the camera can see it, but-- Yeah. So it's going to flatten it, because these are magnetic. They're also slightly radioactive, but don't worry. It's perfectly safe. So what I wanted to do, because I love the audience and the community that you've built. And for the people that serve and have a courage to do things, I never had the courage or the ability to do. I want to give away 250 of these to the first members of the Sean Ryan show that have an APO post office box, which is military or government service post office box. So I can send these all over the world to any of the first 200 people that have an APO box. So I made a special website, BrianKeding.com/SRS. So if they go there, whoever gets their first first come first serve, I will send them this actual meteorite. Oh, damn, that's cool. And I'm going to send them information about what it's made of, its composition, its age, where it was found, and how they can see meteor shower. Have you ever seen a meteor shower? Don't believe I have. Oh, you will love it. And here, you know, in God's country, I will give you a list of the four major meteor showers every year. You don't need a telescope. You don't need something, anything, even binoculars don't help you. Just your naked eye, your wife, your kids, go out on a night, you'll get the list of meteor showers at this website, BrianKeding.com/SRS. And it will tell you how to see them. Four times per year, once per quarter basically. These meteor is here, okay, these rocks here. These are older than this. The physicists who discovered that the dinosaurs were killed by a giant version of one of these 10 kilometers in size, okay, I can bring that today. They crashed into the Yucatan Peninsula. His name is Louis Alvarez. He'd go on to win the Nobel Prize in Physics. He was the only scientist on the Enola Gay, when it dropped the bomb in Hiroshima. This guy was one of super geniuses. Almost nobody knows about him. In World War II, his job was radar, not nuclear bombs, but he then got repurposed after a perfected radar. He said, "When an object gets close to it,
radar station. The radar is pinging it, right? It's shooting out radar beams. And it's bouncing off and it's measuring the timing as the plane is getting closer to the U-boat. And the U-boat's had pretty advanced radar systems. What he did is he built the spoofing system. He built the system that, as it was getting closer, transmitted a signal that got weaker via the inverse square of the distance, which is exactly how a real thing would behave if it was moving away. So imagine you're sitting there in the boat, you're in the U-boat going to cut mine, Captain. Look, look, oh, it's going away. We have nothing to worry about. U-boat gets destroyed. He spoofed the radar by utilizing the laws of physics, broadcasting a signal decreasing as the inverse square of the as they were getting closer by the linear distance, okay? Now imagine you're in the U-boat and you're looking at you're showing your captain. He said, oh, it's going away. And then it drops a bomb on you and you see it at the last second. What would you say? He'd say, hey, that object is a UFO. It defied the laws of physics. It got here faster than the speed of light. They know, they were smartest, frickin' heck, right? Germans were top military empire, the world had ever seen. They would say they defied the laws of physics. How do we know that some of the things that are happening now aren't military technically doped? We have no idea. What's a simpler hypothesis? Occam's razor suggests the simplest hypothesis isn't always correct, but it's more likely than an outlandish or less probable scenario, right? So, interdimensional beings with non-human biologics have traversed space in time with distances that we can't traverse in under 30,000 years with our best technology or the military or Chinese military, whatever military you like, is spoofing us, making us think that that's the case, making it seem like it's defying the laws of physics. Is that proof? But no, a scientist has to think this way, has to think epistemologically. I asked a question in the Patreon tier that I'm a member and Sean and the vigilance elite. I asked a question of Brian Keating. I said, ask Sean if he's ever heard of the Feynman point. You've heard of the Feynman point. Okay. Richard Feynman, another Titanic physicist, Manhattan Project Scientist, Professor Caltech, winner of the Nobel Prize, discovering a quantum theory. He found an interesting pattern in the number pi. The number pi is the ratio of a circle circumference to its diameter. Okay. It's approximately 3.14. And if you're real nerd and you want nerd cred, you memorize it to more digits. 3.141592658. And you keep going. And one of my kids can do it to 22 decimal places. Wow. Feynman measured it and he found really far out. You get to the number six in pi, which goes on forever. But at a certain point, it goes 66666666 in a row. Nothing like that happens before. And that point is called the Feynman point. Do you know where the Feynman point occurs? How many digits of pi you have to memorize out to to get to the Feynman point, Sean? No idea. 762, 762. It's a great caliber. What's that? That's a great caliber, right? I was wondering, like, is your handle because of the by 31 or 50? Hopefully we'll try out the range at some point. So now you might say that's like, hey, Sean, that's really cool, right? And you might say, like, that's a really cool number. And Richard Feynman is really smart. Or is it a coincidence? Scientists has to weigh both options. It could be aliens. It could be human technology. Right now, we have no evidence that proves beyond a reasonable doubt and a scientific sense that aliens exist, that technology is visiting us. Does that mean it's impossible? Like I said, I've been to Antarctica and our coast one seventh of the Earth's continents. If you just estimate it, if I told you, you're just an alien and I say, Sean, Earth is this blue-green planet with an atmosphere and life's all around the planet. There's seven continents where land is, where land-based animals can live. One out of seven continents is called, one of them is called Antarctica. I don't tell you where it is, I don't tell you anything about it. How much of Earth's 8 billion people live on that continent? What would be your first guess? 800. 800 million. You know me now. Yeah, I mean, I'd probably take population divided by seven. Yeah, exactly, right? But we already told you, it's over a million times, you know, it's over, yeah, it's almost a million times smaller than that, right? It's a couple hundred people at a time. So people like to say, well, the universe is so big, you know, Avi and Logan, you talked very extensively about that. The universe is really big. Well, the Earth is really big, right? We don't find life everywhere on Earth, right? We only find humans, you know, one, six of the seven continents, but by just pure logical explanation, you should expect to find it everywhere. So I'm not saying logic is a panacea. I'm not saying it's always the solution, and you should only think scientifically, but I want to use it as a guide, at least as much as we can as a human being species, to get at knowledge in the most efficient, effective way possible. And if it turns up, what it turns up, let's see what happens. Don't let the people suppress what the information is truly scientifically. Thank you. Thank you. Let's take a quick break. Aging is inevitable, and if you're anything like me, you feel it a little more every year. Sorenese tight joints recovery takes longer than it used to. We can't stop the clock, but we can take care of ourselves. That's why I take Bubs Natural's collagen peptides. I mix it into my tea every morning. It blends right in, no taste, no gritty texture. It's simple. I've been using Bubs collagen for a long time, and I genuinely notice the difference. My knees feel better, my skin looks better. I recover faster after workouts. I stick with Bubs because I trust the company. Their collagen is NSF certified for sport and sourced from grass fed cattle. So it's clean, tested, and exactly what they say it is. And there's a bigger mission here. Bubs was found in an honor of Navy SEAL Glenn Bub Dordy and 10% of all profits go towards helping veterans transition back to civilian life. So you're not just supporting your joints and recovery, you're supporting people who served this country. If you're ready to upgrade your daily routine with Bubs Natural's collagen, head to bubsnaturals.com/srs in use code Sean for 20% off your order. Again, that's bubsnaturals.com/srs in use code Sean for 20% off your order. Take care of your body. It's the only one you've got. Welcome to Hollywood vs Reality. What does he do in the movies? Tell me if I'm doing this wrong. I don't watch it. A little flick like that, right? Seems pretty cool. It is pretty cool. Got to silence it. In another lifetime, I did gun reviews for a living. The proprietary magazines, supposedly the best engineering in the f***ing world. When that breaks, you're f***ing f***ing f***ing and now we're bringing them back. It does look pretty f***ing cool. I gotta admit that. Alright Brian, we're back from the break. I forgot to give you a gift. The Jones League, Gary Bears, made in the USA legal in all 50 states. Not that you have to worry about that in California, right? But anyways, are they kosher? I gotta ask the question. I don't know what that means. Commentary? Gelatin. Not kosher, but probably not. Even to my brother-in-law. I'll give it to Jim Brewer. This is for you brother. But thank you very much. Yeah, so I want to get into the telescope to buy some. Yeah. How did you get involved in that? A lot of kids when they're young, men, they can be look up to their dad. They can have difficulty with their dad. They can be competitive with their dad. My father was in the captain of the football team. I gotta be captain of the football team or whatever. Or my father served. I'm gonna say no. My father was a scientist. He was a professor. And early on in my life, he got divorced from my mom. And when he did, he actually abandoned my older brother, Kevin and me. And we grew up adopted by my stepfather, Ray Keating, who was a Vietnam pilot, F4s, and KC-135s, served in Vietnam. And he adopted us from my family, which was I grew up Jewish. Like I said, both parents were Jewish. And then my stepfather's family was Catholic. And huge, you know, 50 brothers and sisters, uncles and aunts. And it was so such an incredible family. I mean, they're still, you know, tighter with me than my own biological family growing up, except for my brothers, of course, and my mom. But my father just abandoned us, so actually changed my name. It was legally adopted. My name when I was a kid was not Keating, it was Axe, Brian Axe. So now it's Keating. Change my name. My brother too. And
and he left. He just, you know, he abandoned me and my brother. I was seven. My brother was 10. And he moved to the West Coast in same 15, 16 years. Wow. Until I started to kind of follow in his academic footsteps, which was weird because I didn't remember what he looked like. 'Kay, I was seven. Last time I saw him, my brother was 10. I never understood how he could abandon a 10-year-old. I was like, "Uh, I'm seven. I'm not that important." But like, my brother was like a full, I mean, you kids, you know what it's like. I can't imagine doing it. Anybody to be honest with you. Yeah, neither. But he did. And he had his reasons. Later, find out why, but, but what was the reason? He felt like my mother had turned us against him that had, you know, she had kind of pitted us psychologically against him, which wasn't that big of a stretch because he was kind of an a-hole. You know, he tried to beat up my stepfather, came over one night drunk, or whatever, trying to beat up my stepfather, take us back. And he'd go through my, you know, visitation, trying to beat up a fucking science-seasoned Vietnam veteran. No, yeah, he did. That worked out. Well, it didn't work out that well. It did not work that well. But he was as brutally complex, brilliant. I mean, still the most. I've interviewed 23 Nobel prize winners, puts all of them to shame. I mean, he did. He passed away as you'll find out, but he was a great scientist. And, you know, when I was going through my formative years, you know, in the high school, I got really interested in astronomy. I got a telescope, just like this. And it changed my life. You know, I had been adopted. I'd been Jewish from birth, but I was adopted. I got converted to Catholicism by my mom and my stepfather. Change my name, got baptized, confirmed. And instead of being, it's called a bar mitzvah, when you're in Judaism, in age 13, you become a man, so to speak, although having 13-year-olds now, it's kind of a far stretch to call them men. But, but anyway, it's this right passage. I was actually not having my bar mitzvah. I was an altar boy in the Catholic Church of St. John and St. Mary in Chapagua, New York. And I loved it. I had no problems with the Catholic Church. I wanted to be a priest. When I grew up until I discovered girls around the same age. And I just loved that whole environment, but along the same time, I got a telescope. And I looked up and I did those kind of observations that I told you Galileo did. I didn't know who Galileo was. At first, I looked at the moon, had craters on it. I looked at Jupiter. It had moons around it. I looked at Saturn, had rings around it. I looked at my neighbor Debbie. She was super hot. Sorry Debbie, if she's still out there. Never saw anything, you know, too bad. But in reality, it kind of transformed my worldview and I started to learn more. And this is before the internet in 1986, '87. Google. It was not, you know, the Sunday New York Times newspaper in Chapagua, New York, right? So I could look up stuff. Oh, wait. I saw Jupiter. I mean, how many people out there know they can see a planet with their naked eye or see a galaxy with their naked eye? You can do all that stuff. I got this telescope. I worked at a deli down the street from where I was living in Dobbsfaria at the time of New York. And I saved up enough money and my mom gave me a little money. And I bought a telescope and it changed my world. It literally made me into a scientist. That's what I say out there. I need your dad's out there, you know, parents out there. Get your kid a telescope. Just do it. It's 50 bucks. Actually, I have a website where I keep it calm slash telescope. I don't get sponsored. I don't get, you know, big astronomy. Nass is not paying me to do this, but I give recommendations for telescopes for different budgets. And nowadays, it's insane. I have a telescope now. It costs a few thousand bucks. It takes Hubble kind of telescope images, you know, incredible stuff. It's all, it's all electronic. You don't put your eye on it. But you can put just the most incredible vision into their mind. And then when they're 10 or 11 years old, maybe they'll be crazy. I mean, when I was, because I've been looking at these for my kids, because they're always my son's like obsessed with the moon. And I was looking up telescopes on Amazon. And I was like, holy shit, these things will like find the damn stars for you and focus in. You don't even have to do anything. But don't start with that star. I did. And I started with the old mess up. Yeah. Yeah, just point it and look at whenever it was bright, except for the sun. Okay, don't look at the sun with your remaining good eye. Yeah, I'm supposed to. So, but everything, you can see the exact same things that Galileo saw. And unlike, you know, show all this interesting, people say, what's it like to be a scientist? I can't really tell you, yeah, like when I discovered the Higgs boson or they, you know, they discovered nuclear fusion. Like, I don't know what that was like, because you can't, there wasn't one guy who did it, right? But there was one guy who discovered the craters on the moons, the rings of Saturn, the moons of Jupiter, that's Galileo. And so you can, not only see what he saw, this is what's insane about astronomy for 50 bucks. So go on, get a freaking telescope for all your kids or grandkids or whoever shone. It's the cheapest kind of insurance that they'll be curious thinking for themselves individuals. You can see exactly what Galileo saw from the middle of San Diego or New York City. He didn't, he didn't need a Hubble telescope to see that stuff. He was in Northern Italy. You can see the exact same stuff. He saw even from a light polluted place like New York City, craters, valleys on the moon, um, canyons. You can see the rings of, of, so what I'm saying is I got addicted to it as a, as a, as a, as a 12 year old. And at that time, Galileo, who had conjectured that because Jupiter has moons around it, that the Earth cannot be the center of the solar system. Because Jupiter's moons are orbiting Jupiter, which itself is orbiting the Sun, but it's not orbiting the Sun. According to Aristotle, according to the Greeks, according to all of ancient received wisdom, you know, from following the science for the last 2000 years before Galileo, no, the Sun was the center of the universe. Sorry, cut that out. The Earth was the center of the universe. In fact, that's what the Bible seemed to suggest. That's why he was, that's why Bruno was burned up the stake and that's why Galileo was put in jail eventually. And so when I found out, hmm, what happened to Galileo when he had these ideas? What did the Catholic Church do to him? They throw him in prison for scientific ideas. And at that time, you know, I can't say it didn't have something to do with discovering girls to be honest with you Sean. Like not wanting to go all the way and be a priest and, you know, to be around nuns all my life. And that would be the only woman in my life. Um, so no. So I decided, at that point, I'm going to be an atheist. Like I actually decided I'm going to be an atheist. Really? Yeah. Just because you want liked girls. No, well, that's, that's not like some small thing, Sean. I mean, I just don't want to be a priest like girls. No, no, I just, I don't want to be a priest because I like girls. Uh, but no, I decided that I don't want to be a part of a religious organization that would punish someone for scientific truth. And at that time, Pope John Paul II, and who's, you know, my favorite Pope, I still love, yeah, I still love Catholicism. I still love the Pope's, you know, um, but he was special. He was a very special person. And even he never pardon Galileo. He just said he was right. Imagine like you do something, you're in service or the president doesn't like give you a commendation. Certainly, this is going to give you a commendation, but they're like, we, you were right. We're not even going to take away the crime that we accused you of. We're not going to say that pardon you. I mean, there's something that was unsettling to me as a young, again, I was a 13 year old nitwit, right? So what do you know? Right. But at that time, it was kind of justification. That's when you decided to become an atheist. I literally decided to become an atheist. And there was another reason, because I said I was born Jewish, right? But it became Catholic, which Christianity, um, I served in the Catholic church. I loved it. And, um, and, and, you know, for me, I came from this, uh, from a tradition that's older than Christianity, right? Jesus, Christ, uh, Jesus Christ was a Jew. And I felt like, well, Christianity came along after Judaism, right? It came along after Judea, right? And Jesus was, uh, I was a Jew. Um, so if, uh, if Christianity has these challenges, like they're not going to accept scientific wisdom or they didn't, uh, forgive Galileo. Um, and so then I could say, well, Judaism has got to be wrong because, you know, if something is based on, you know, if, if, um, calculus is based on algebra and, and, you know, calculus, you can say, well, calculus or algebra is wrong. And certainly calculus will be wrong. That's not true, but that's kind of the analogy I'm making here. So I just felt like all of religion, you know, has these things. We have to listen to these, these authorities. You have to do what they say. You have to think what they do. And you can't think for yourself. Again, I'm a 13 year old at this point. I'm not a sophisticated 50 year old, you know, professor who was investigated religions and, and, and compare things and had much more experience than I do now, okay? Then I did that. So at that time, I became a scientist in terms of curiosity because I wasn't only looking at things and, oh, cool, I started taking notes. I started doing research. I started, and again, this is before Google. And sometimes the more you struggle to get information, like nowadays I feel bad for my kids. In some sense, because they want to know like, you know, how many golf balls fit inside the good of your blend? Like literally, I would have to calculate. There was no tool to do that. I'm not saying that's some important thing, but, but you get the point. Now, you literally look it up in one second, you get instant gratification. You don't do any of the muscular work. You don't, you don't damage the muscle to break it down your brain. And so I feel like they're losing out on that. For me, I was doing all that. And I felt like the more I learned about science, the less room there was forgot. Look, I'm not the first person to say that, right? Nowadays I'm practicing.
religious, I practice Judaism. So obviously I came back to it. We can get to that later on, but but in the sense of knowing a little enough to be dangerous, that's kind of where I was at age 13. And I devoted my life to science. I wanted to, I taught myself calculus. You know, I didn't have calculus when I was, or I grew up in rural, upstate New York, or you know, Northern Westchester County. I had to do it myself. I had to teach myself autodidactically, learning all these different things, trigonometry, and then I was doing research in my telescope at night. And I just loved it. I was addicted to it. I was getting to that flow state and that's all you want to do in life. And then slowly, but surely, I started to reproduce like the step that my father, you know, who hadn't seen in 16 years or 50, you know, whatever it was at that point, 12 years. And I started to reproduce. And I was like, hmm, let me look up in scientific journals, like whatever happened to him, Jim Axe, James Ack, whatever happened to him. What did he do? And I saw these papers about science. And it was like the most high level science, the origin of quantum mechanics, quantum entanglement, theory of relativity, origin of the universe. And I'm like, this guy has my DNA or I have his DNA, but there's something different. I wasn't raised with him, but I'm doing the same thing as him. It's weird. It felt creepy to be influenced by a ghost. I didn't know anything else. I didn't even know if he was alive. Wow. And I hit 22. I was in grad school, 21 at Brown. So your bomb? I mean, they were, they fought so bad and they did kind of use us between his intermediaries. That was a challenge. In 1970s, it happened a lot. And also, you know, to really, you know, give him the kind of negative judgment that he deserved. When you get divorced, you know, hopefully, you know, it's never happened. But you have child support, you have alimony. And he was given the opportunity to choose between paying the back child support that he owed for myself and my brother, or giving us up to adoption to my stepfather Ray Keating, who's only 30 year old guy at the time. And he said, I don't pay the money. So he gave us up for adoption. So my name got changed. Brothers name got changed. I didn't see him. I hated him. I never, I was like, how could you abandon my older brother, I was protecting my older brother, Kev. Can you wrong? Who you were close to wasn't like, you know, they weren't close. They were very close. Gave him up because he hated my mother so much. And she hated him just as much. Okay. It was a very nasty divorce. And so by the time I hit graduate school, got my PhD at Brown University, I started, again, the internet was pretty young in mid 1990s. I started research like, what did he do? Like, who was he? Is he alive? I didn't know. I didn't remember what he looked like. The last time I saw him was in a court in Long Island, New York. Sean, I didn't know what he looked like 15, 16 years later. It's bizarre. And I started to research what he was doing and what kind of research he was doing. And what happened to him? And it turned out he was still writing things about quantum mechanics, cosmology, relativity, all the stuff that I was like fascinated with. And I wanted to dedicate my life to. But there was like quantum entanglement. Like somehow he had influenced me from beyond the, no, visual horizon. I hadn't seen him kept up with him. There's no internet really. So it was spooky. A spooky action at a distance. He was influencing me. So I started research him, got more and more involved in it. I had, you know, kind of like a minor medical scare when I was like 22 and I thought it could be genetic and whatnot. And it turned out that my mother's mother and my father's mother both moved to the same part of Florida, which is called the Yiddish Triangle. You know, all these Jewish grandmothers, they all get together and then they live, you know, three miles around sunrise Florida on the East Coast of Florida. It's a great place to retire. And they were living basically in like retirement community, like phase two sunrise palms and phase eight, you know, whatever. And they hated each other too, but they had friends that were friends with each other. So these, these two Jewish grandmothers got connected via their other Jewish grandmother friends. And I call the Yentonette. Like before the internet, there was the Yentonette. These old Jewish grandmothers talk and they start talking, talking, talking. Oh, Brian's at Brown University. He's a scientist. The other one says this. Do you know he's still alive? Oh, you know, somehow my father finds out that not only am I alive. I mean, he didn't know, but, but I'm studying math and science and physics. And I'm on a top school at Brown University. He's obviously a great school. And one night in my dorm at Brown, I get a phone call, pick up the phone. And he goes, this is Jim Axe. And I, before he said, Jim, I knew it was him. I knew his voice. I don't know. Sometimes the ear is deeper than the eye. And so we talked for five hours straight. He was living in California. Yep. Everything, math, science, physics. One thing we avoided is why he abandoned me. But I was just so curious. Just like, imagine if I gave you a book from your great, great, great grandfather. Like, how much would you pay for that book? By the way, you have to write a book. If you don't write your memoir, you know, someone else is going to write it for you. And your great, great grandkids want to read that book. Everyone's got to write a book, but especially people like you. I mean, you've influenced millions. What's that time? You had it for me. Not time, but don't let it go too far. And I really hope you do because you'll influence so many people to the good as you've already done. And a book is like, I love your podcast. You know, do I ever go back and listen to like episode like 14? No one's ever got, you're not going to go back and listen to it, right? But you can take all the wisdom that you've distilled. Not just the knowledge is like dirt. Knowledge is everywhere. Wisdom is nowhere. Take that wisdom, put it in a book. That's all I'm saying. Your kids, your future kids. Well, anyway, so he and I talk for this whole time, get back together. Finally, I'm like, wow, this guy is done so much. He's still going. He's still hungry. Yeah, he's got all these flaws. But where do we go from here? And I realized like he had won all these awards as a scientist. And I was like, I can't, I don't not say it. I'm really never talked about it. But I wanted to make him, I'm really like embarrassed, but I'm going to say I wanted to make him regret that he ever gave up on me by doing what he never did, which is one of Nobel Prize. Make sense if you want to make him proud of you. I want to make him proud, but I wanted to make him regret a little bit of punishment, friend, even though I let him back into my life. And even though he got back with my mother, you know, when they became friends, I didn't get back married or anything. He came friends and bonded over grandchildren, later on in life. And he died very young. He died 69 years old, 20 years ago, exactly. But between the time of graduate school, when I was 22 and when he died, I was 33, 34, we became closer than any two sons I've ever known. And during that time, I got incredibly interested. Like I said, I want to make him some, there must be a German word for like, you know, like Schadenfreude. There might be some word for like prideful regret. But anyway, that's what I wanted. And so I invented, I said, I got to find something that's going to win the Nobel Prize. And that's the highest award. I don't care what it is, like Olympic gold, you know, like Grammy Award winner, you know, B-E-T-O or whatever. I don't care what it is. Signal award, all the podcast stuff you want. There's nothing like the Nobel Prize. There's only like 200 people on earth that are alive that have Nobel prizes. Got to have 8 billion people. Okay. They're the intellectual, you know, seal, you know, seal team members. Okay. They're the brightest of the brightest of the brightest point, you know, 001% of the planet earth. I want to be there partially for, you know, these vinyl and bivalent reasons I had about him, but partially because I'm just so curious about the earth in the world and nature and science and God and how they all mix together. And for me, the way that was the ticket to do all these things was to build an instrument to explore Genesis 1-1, like how the heck did the universe come to be? Not just the aliens and the black holes and the galaxy, but the universe itself. And it's a dangerous thought because, you know, people have been killed for this, people have been tried. Nowadays, we don't live in that kind of environment. So when we talk about the government lies, okay, it is true. They probably do and they've done a lot of bad stuff to a lot of friends of mine as well. But it's nothing in comparison to the lack of freedom that Galileo had, that, you know, geodontobruna had, okay, nothing like that. I don't, I'm not going to compare myself to those people, right? I can do whatever I want. I have tenure, I have brilliant graduate students, collaborators, I have resource funding, supporters, the government's sponsor, a lot of stuff. I work at a public university. Now I got paid. Gavin Newsom's my boss, you know, lucky me for a few more months left at least. So this is all to say that I wanted to, to win a Nobel prize at all costs. But I was fortuitous because it was also studying something that's guaranteed to win a Nobel prize if we could do it, which is to take a snapshot of what happened before the big bank. Basically, before the universe started off in its incredibly intricate and just phenomenal acceleration and expansion, what caused the big bang to bang? What's the primer strike? What's the, what's the inciting incident that caused the explosion of the universe? No,
nobody knew it. There were theories about it. And so I designed a telescope that doesn't see light. It sees heat. It sees microwave radiation. And that microwave radiation is all around us. It suffuses the universe. And it's the leftover heat from the fusion, nuclear fusion of the first elements, hydrogen and helium, and their isotopes. And that leftover heat is a fossil that travels through space and it travels through time. And we can detect it. And we can build instruments that can sense it. And the specific signature that we see will tell us about the conditions that we're prevailing during the first moments of the universe's history, before the expansion that started to take over that we call the Big Bang. And crucially, what happened on the I like to say, what happened on a Tuesday before the Big Bang? There was a day, right? If you think back, today we're in May 2026. It's a Tuesday. We can keep going back, back, back. We think the universe is 13.826 billion years old. Tiny little uncertainty. But we can keep going back. And let's say the Big Bang occurred on a Tuesday, right? Let's just just by 24 hours times 365 times 13.826 billion years, right? You can get a number. You can get a day. You can get a calendar day on our calendar. Now it doesn't mean the calendar existed. Earth didn't exist, right? But there's a day. What happened the day before that? That's when we want to know. And for the first time in human history, we could possibly do it. Oh, and by the way, if I did it myself, my colleagues maybe would win a Nobel Prize. And finally, get that come up in that I saw, you know, my many failures. But but one of them was that desire to show up my dad. Wow. So where do we go for beer? Well, it took me to the South Pole. It took me to Antarctica. When you get a coffee and you put in the microwave in a ceramic cup, like you're awesome swag and march outside that alone, you pour it into a cup, right? You can put the coffee in the microwave. You can put it in there for five minutes. Don't do this at home. It's very dangerous, actually. But you can actually microwave it and it'll get above the boiling point of water, right? And then you could take the mug out. Just you can just grab the mug. Why is that? You got 300 degree, you know, Fahrenheit water in there, potentially about to explode. And the ceramic cup is room temperature, basically. Why is that? Because ceramic is completely dry. There's no water. It's been baked in an oven for hours. That's what makes it. That's how you make ceramic clay and stuff like that. The water in the coffee is not dry. It's wet. It's full of water. Microwaves from the microwave oven, jostle water at just the right frequency, it's resonant frequency, that starts to vibrate and interact with other water molecules. That's what causes it to heat up. You can't heat up something in a microwave that doesn't have water in it. And that is tuned exactly for the resonant frequency of water molecules and that causes it to heat up dramatically. So if you're trying to detect microwaves from a source, from a planet, from a galaxy, from the big bang itself, you want to go somewhere where there's no water. Namely, you want to go somewhere very high up. Maybe you could go to outer space, but that's very expensive to put a rocket in satellite and a telescope in space. Very difficult. Takes a long time. It's been done, but only three times in all of human history that we had satellites take pictures of the signal from space because of the cost and difficulty to do that. And actually nowadays, we can do it almost better from the earth, from the South Pole and Antarctica, where I've been twice. And from Chile and the Atacama Desert, it's about 5200 meters above sea level, 17,000 feet, so high up that you have to wear oxygen full-time in your nose because you're above half the atmospheric water pressure. You're at the flight level 180 from my pilot friends. Infrared radiation is cooking you. There's huge equipment that can kill you. Bulldoze, there's people drive off roads. There's no, like the same kind of road safety that we have. Don't have it down there. It's like being on the planet Mars. In fact, NASA uses it as a test place to test out lunar rovers and lunar helicopter, Martian helicopters and Martian rovers. Oh, before I forget, this, I won't send to your viewers, but being a Mars. This is a piece of Mars. This is the actual planet Mars. It's a meteor that came from the planet Mars. It was knocked off by a bigger chunk of an asteroid, blasted into space, orbited around the earth for probably 20 million years, and landed in Northwest Africa. Wow. Okay. So this here, you can actually touch. How do you know that? So the chemistry and the spectrum, and the spectrum that it reflects, we analyze it is 100% match for the, for Martian rovers that have been there, like the ones I was just talking about. So this is a gift for you. Pretty rare. And you can see it. It has little bits of like, see the little bits of like orange, just flakes, metal. That's iron. The reason Mars is red is because it's basically rusting. It has iron and iron rust that oxidizes and those little specks in their iron. So that's another planet. It's taken millions of years to get here. And here's a cover for it. I have a certificate for you. That'll give you you later on. It tells you all about it. It's properties and so forth. So to test out before we send a Martian rover, they send it to the out of common desert where we have the Simon's Observatory. So you asked, where do we go from here? So we built this instrument in starting in 2005. That was meant to do just one thing, to take an image of the baby picture of the universe, the oldest light in the universe is called the cosmic microwave background radiation. It's the heat that's left over when you do nuclear fusion or fission, heat is given off. When that heat is given off and the universe expands, it cools off. It red shifts and dilutes, gets less energetic. And now we see it instead of being gamma rays or ultraviolet light, we see it in the form of microwaves, long wavelength radiation, characteristic wavelengths, about two millimeters. The corresponds to about 150 gigahertz. This radiation was discovered for the first time in 1965, outside of New York City, by two astronomers, Penzeas and Wilson. And they went on to an animal prize in physics. And this discovery was so significant because it was the first physical evidence. In other words, not just philosophical or theoretical. Oh, the universe could be expanding. It was proof that the universe was once in an extremely hot and dense state. And that can only be possible to create nuclear fusion, which creates the hydrogen that's in the water that you're drinking. It creates the helium that we have in balloons and other uses for. So the elements that appear on our table are made during the big bang. But when fusion occurs, heat is left over, we still see that heat to this day. So what we're looking for is that heat. And what do you still see the heat to this day? So when the universe starts to expand, everything gets stretched out. There are galaxies. Galaxies are now moving away from each other. Things don't hurt. Don't get stretched apart. Things in our solar system don't get stretched apart. Even things in our galaxy don't get stretched apart. They're held together by gravity. But anything beyond, say, the Andromeda galaxy and beyond, is actually expanding away from us. Space itself is expanding. Space, according to Einstein, is dynamic. It's not static as Isaac Newton showed. He said, no, the space is dynamic. The more energy you put into it, the more space expands. And so originally Einstein, you know, didn't believe in the big bang. He felt the big bang was not well justified. He thought it was, it was completely wrong. And he thought it smacked of religion. Actually, Einstein was not religious. He didn't, he spoke about God sometimes, but he didn't really believe in God the way that we would think of it. And he said that the universe was not expanding. It's static. And the only way that he could get that to be the case is if he inserted into his equations as fudge factor that kept the universe from collapsing on and so. And that expansion we now find is actually going in reverse. It's not only not static. It's not only not collapsing. It's actually expanding at an accelerating rate. It's like pushing on the cosmic accelerator pedal. It's not a constant velocity. Every galaxy is moving away. And tomorrow, the rate of moving away will be bigger than it was today. That's the heart of the big bang concept, meaning that if you reverse that, everything gets closer together. So galaxies will be closer in the past. Eventually, you reach a point where all the galaxies in the universe are all touching. And all the matter in the universe is in one point. And that point is thought to be a singularity. And that point of singularity is the big bang in the big bang concept. It doesn't tell you anything about how the big bang started though. It just says once the big bang occurred, the universe started expanding and accelerating. And we should see evidence for it scientifically. And we do. We see tremendous amounts of evidence. There's zero doubt that the universe is expanding. And there's some doubt about how fast is expanding. That's another subject. But no one disagrees. No cosmic police officer at the radar.
say, no, if you're static or you're collapsing, no, the universe is expanding. And so there are signatures of that expansion everywhere, like a radar Doppler shift, but of all the galaxies that we see in the universe. And in fact, of all the heat and radiation we see in the universe as well. And the type of radiation that we look for is called the cosmic microwave background. And the best place to look for it is at the South Pole Antarctica or in the mountains of Chile. So I've two different experiments that I've been involved with, one is Bicepta, which is an acronym, a background imager of cosmic extragalactic polarization. And in 2014, we claimed we saw that primer strike that ignited the Big Bang. So we claimed we did the thing that I wanted to do to show up my father to win a Nobel Prize. And, you know, spoiler alert, you know, my first book is called "Losing the Nobel Prize." So something went wrong. Something went really wrong. We made a claim that we saw what caused the universe to begin its expansion. And that's a type of quantum field. We call that quantum field the inflaton or the inflationary field. And we said we detected the shrapnel of the explosion basically. If you wanted to detect something, like you hear someone on the range shooting, right? You could detect that they're shooting in a variety of different ways, right? Visually, you could detect the sonic impact of it. You could have eyewitnesses to it. You could have photographic cameras watching it. You could have infrared. You could even have, you know, some particles inside the potassium inside of gunpowder, a potassium 40. It's radioactive. So you could actually see the dispersion of the smoke cloud of radioactive potassium. And you could detect neutrinos, muons, other things coming from, I'm making this up. I mean, it's true that you could do that. I'm just saying, there's more than one way to skin a cat, right? So there's more than one way to detect something if you can't see it. So we've devised these different types of tools and technology to see things that we could not have possibly witnessed, namely the origin of the universe. Like, there are no people there. There are not even any stars or galaxies or planets or aliens or anything there, right? It was the origin of energy and matter itself. But what caused it? If this theory called inflation is right, there would be a signature like smoke from the gun called gravitational radiation waves of ripples in space time. You and Avi Loeb's book about what space time is, space time is interconnectedness of all different events that could possibly occur in the entire observable universe back to the beginning of time. And so we're looking for the earliest shock waves that would come with the explosive expansion of space. And those are called gravitational waves. We look for them in the CMB and this cosmic microwave background. And we said, on St. Patrick's Day 2014, at a press conference at Harvard that was led off by Avi Loeb made the introduction. I wasn't there. I had been unceremoniously removed from the leadership of the team that I had first started. That's another story. But the announcement made headlines around the world. New York Times, CNN, my hometown newspaper. And at that moment, I had been a little bit unsure about the real veracity of the results if they would hold up in court, you know, sort of the scientific court of law. Or if we had seen things that masquerade as the signal that you want to see, Richard Feynman again Feynman point seven, six, two digits into pi six six sixes in a row. He said the the first principle in science is that you shouldn't fool yourself. But the second principle in science is that you should think that you're the easiest person to fool. It's like you're at a poker table. You don't know who the the Patsy is. You're the Patsy, right? Scientists should always think that he or she is the Patsy, that he's going to make a mistake and then do everything in their power to resist that temptation to make an announcement that could win a Nobel Prize or whatever and do every sort of due diligence check you could do possible. And we thought we did, but we missed one crucial element that there was a type of signal that comes from the cosmos. It comes from our galaxy, in fact, but it doesn't come from the big bang. And it's exactly related to these meteorites. Again, Ron Keating.com/srs if you have an APO address. These meteorites are actually the corpses of dead stars. When a star above a certain mass explodes, eight times the mass of our sun, it explodes out and it's a fusion bomb that goes off in space with the equivalent tonnage of trillions and trillions and trillions of Hiroshima bombs. It's eight solar masses converted to energy V equals MC squared. When it does that, the reason it does that is because it's trying to make this material iron and nickel. When a star fuses oxygen, silicon, together to make iron, everything else before it gets to iron gives off more heat than it takes in. The fusion reaction always gives off heat, but the heat that's given off when it makes iron is too insignificant to keep the star afloat. So the star runs out of pressure and collapses. And then it detonates out in a shockwave. In one half a second, a star that's been living for two 20 million years ends its life in half a second in a nuclear fusion implosion that blows out into the whole universe, the last thing that it made and it's core, which is iron. That's why this is iron. Guess what else is iron, hemoglobin? Your blood right now has the same iron isotope as this meteor. Why is that? Well, your mother lived on earth. She ate food on the earth. She's made of human biologics, right? Not David Gretchen. She's made of, hopefully your mom's not a thickener, whatever they talk about. So she ate food. Food is made from the earth. The earth has iron in it because it came from an explosion from a supernova. So if this supernova didn't blow up 4.5 billion years ago, we wouldn't have this iron. So this iron is older than the earth. It became part of our molten iron core and our solid iron core. And it became part of our food chain. And it's in the blood that we bleed. We all bleed the same iron that came from a supernova. So these meteorites float around in space and it turns out that they can actually mimic the signal that would have represented the primer strike to ignite the big bang. So we got tricked into believing we saw the big bang. We really saw a bunch of meteorites basically. With summer travel, even learning a few real phrases can completely change the experience. You're not just pointing at a menu or hoping someone speaks English. 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Right now Babel is offering listeners up to 60% off. Go to Babel.com/SRS. That's Babel, B-A-B-B-E-L.com/SRS for up to 60% off. Rules and restrictions may apply. What do you think happened the day before? Well, so I always say things like, you know, people say, do you believe in God? You know, I've heard you, I've heard you talk to my mutual friend Andrew Rembrandt, you know, came a Christian, right? He believes in God. Actually was a little perturbed at Andrew. I told him later when I was on his show, but like a scientist shouldn't say, believe in something. Okay. So in Hebrew, the word for faith is in Hebrew, Amuna. Amuna is where we get the English word amen. It means I believe. It means I have faith, right? Say amen. In Hebrew, that word means faith. It doesn't mean belief. Belief is a different word, just like it is in English, right? I would say, I don't believe in God, right? I don't believe in gravity either. If I take this, it drops according to the laws of Isaac Newton. This is a law. I have evidence for gravity. So I don't have to say, like, do I believe in something? I should say, I should look for evidence of something. I'm going to, I'm not saying this for everybody, but I'm a scientist. I don't want to say I believe in God. I want to say I have evidence for God, which is stronger. You believe in God or you have evidence for God. Now you may believe that you have evidence for God. Jesus,
may be enough across the evidentiary threshold for you. Many people it has, I'm obviously Jewish, so it's not the same theology. But in fact, we have things that we say we believe in and then we have things we say we know. And that distinction I think is really important. So you ask me, what do I believe happened? Or what do I think happened? I, that question to a scientist is anathema because we don't, we don't wanna be prejudice to that. That's what got us into trouble with this experiment. We believe we saw this signal that would give Brian Keating the novel a prize, right? I mean, that was the only goal. But that's where you get into trouble as a scientist. - We must think about it. - Two, I do, yeah. - You have any evidence? - For what may have happened the day before? - Exactly like what UNI talked about with aliens, right? So we don't have any evidence for it. The universe again is like the most undefeated, you know, the movie 300 I was watching about, you know, like imagine like Zert Sees versus the, what's his name's Theodianus or Leopoldus or whatever, like 300 versus an infinite number, right? Zert Sees is like Mother Nature, like just an infinite army. It completely unstoppable, technological, Mother Nature doesn't give up her secrets. But like, you know, like Gerald Butler, you know, in that movie, a small group of dedicated people can make great gains, right? I'm trying to get more and more evidence for both believing, you know, what I want to believe to be true or what I hope to be true, both in science and in religion. It, but I'm not, I am under no illusions that A, God cares if I believe in Him or not, just like gravity. You jump out of a plane without a parachute, you know, I always say, you don't need a parachute to skydive, right? You only need a parachute if you want a skydive a second time. Like, I believe in gravity, you know, to the same extent that I need to, but I have evidence for gravity. I want to feel the same way about God. So what are the options? Just as you and I talked about with aliens. Aliens could be real, interdimensional, non-biological beings or whatever, right? They could be AIs traversing the cosmos at light speed. They could be, you know, Chinese siops. They could be German, like Louis Alvarez, playing around with the Germans' minds, breaking the laws of physics. They could be a siop by the government. They could be a mass delusion or hysteria, or they could be really, truly, masters of interdimensional trouble, okay? Those are different hypotheses. Now we have to go through each one, evidentiary, what's the chain and so forth. For cosmology, same thing. They're alternatives to the Big Bang. The Big Bang posits that at one moment in time, time came into existence. You couldn't ask what happened the day before that makes no sense. That's like saying, go to the South Pole with me next time and go South. You know what happens when you go South from the South Pole at the South Pole? You go North. There's no such thing. It doesn't exist. Some say that's true. Stephen Hawking believed that. There's no time before the Big Bang. Others say that a competitive theory is the universe existed before the Big Bang and collapsed and crunched just like the supernova that collapsed and crunched from our supernova. That big crunch led to the Big Bang. Another one says an interdimensional concept called string theory that existed in higher dimensions than we exist in, 10 dimensional string theory domain. That two different types of what are called membranes came together and ignited are what we call the observable Big Bang. Another theory says we exist in a multiverse which just as there's more than one planet, there's more than one star. There's more than one galaxy. There's more than one cluster of galaxies. Why shouldn't there be more than one universe? - What do you think about that? - So let me just get to the last. - Okay. - And then there's a final topic which is that the universe didn't have a big crunch and singularity. It's just been slowly over time interacting, expanding and collapsing, expanding and collapsing like a breathing of a lung. Okay, coming into and out of creation and producing things. Now, as a scientist, we can't prove something. We cannot prove that the universe had a Big Bang. We also, strangely enough, we can't prove the earth is round. I don't know if you're aware of this. We can't prove that the earth is round, okay? - We've had this discussion many times. - Now that's something people say, I believe the earth is round. I believe the earth is flat. I always joke, there are people that believe the earth is flat all around the globe, you know? It's, you'll find them everywhere, Sean. But in reality, you can show that the earth is not flat, but you can't show that it is curved. Do you understand the difference? You can prove something wrong in science, but you can't prove something is right. You can't prove something is right. I can say I have evidence for evolution and they're competing theories of evolution that exist in, but they've been falsified, proven wrong. And if you can't prove something is wrong, or if you can't at least expose it to the opportunity of it being wrong, then it's not science, right? Astrology, when I was dating my wife, we went to the downtown Mission Beach, San Diego, they have a boardwalk, and they had a fortune teller, and she's like, oh, let's tell her, let's see our fortune, see if we're compatible. You know, I'm like, she's an English major, you know, like she, fine. I really love this girl, I want to marry her, so I'm gonna play around with it, even though it's anathema to everything I believe, to go through Astrology. The astrologer sits down and says, you know, what's your sign? And, you know, I say, I'm a Gemini, and she, oh, okay. You know, here are these different things, your personality, and your moon sign, your sun sign, and this thing, and this thing. And then I said, oh, thank you very much, and my future wife, my girlfriend at the time, oh, it's really good, she's, everything's not really good, like we're compatible and everything, and I got up, and I, just to be a dick, you know what I said, I just wanna confirm, I'm born in September. That's Gemini, right? And she said, no, no, no, that's Virgo. But the same things are gonna happen to you anyway. In other words, it didn't matter what I said, it didn't matter what evidence I gave her, it was unfalcifiable, it was irrefutable. That's not science, that's fun, you know, it's card trick. You know, it's entertaining, she made her $50, whatever, and we're still married 18 years later. But to me, the prospect that you will not submit your theory to falsification, and that's some of the problem I have with Avilo. Okay, I love Avilo. But I said to Avilo, by my podcast, when he came on for his first book, I said, Avilo, you believe that Omumua is extraterrestrials, like the title of your book, right? You believe it came from another source, and you believe it's technological. Remember, he told you he thinks it's a thin solar sail, technological, only technology can build a solar sail, that captures solar wind from another star, directed from where we don't know, but to where we do know, 'cause it came through our solar system. Was it intentional, was it unintentional? He thinks it could be like a garbage barge, or something like that. And I don't know why you put like, you know, your trash bin on a solar sail and send it out into the universe, rather than just crashing into the near sun. But let's just say he's right. I said, Avi, you always brag to me, and you're lucky, you're at Harvard University, where everyone's above average, and we should talk about Harvard and Jeffrey Epstein at some point. But, and Avi's not involved with any of that, by the way. But I said, you know, Harvard, everyone's above average, and you happen to have access to these, copious supply of billionaires, and everyone loves the Harvard and Pramatur. You say Harvard, and as part of the reason, Avi gets a lot of the attention he gets, but also a lot of the hate that he gets. People, you know, and he's one of the most legitimate scientists, published 757 different articles in scientific peer review, journals, multiple books, you know, the guy works harder, you know, when I'm interviewing him, sometimes I say, Avi, show me your hands. It's like, light, light, light, light. And I said, I want to make sure you're not writing a book while we're talking, you know, he's so productive. I mean, he's off the charts. Okay, but I said, Avi, you have access to these billionaires. Imagine that Omua Mua, at the time, it's the first object ever to come from another technological solar system like the Earth. And you know a billionaire who can fund a rocket to send a telescope to go catch up with it. And he said, as he told you, no, but I know we wait for the Vittoruban telescope to come online and it will capture many things. I said, Avi, you're happily married even longer than I am. Imagine like you're with your wife. You don't know she's gonna be your wife. You're dating her, or maybe she's just searing the coffee shop, or he met her on a blind date, I think he told you, right? And it's a blind date, and like you're with her, and you're like, oh, she's really nice, but I think someone better is gonna come along soon. You know, how do I know someone better is not gonna come along, Brian? And I said, you would do anything. This Avi now would do anything to that obvious, say, shut up, you idiot. Ask her out, keep going on a date with her, 'cause you're gonna have two beautiful daughters with her, and you're gonna have a life of happiness and love. But he's saying the opposite. He's saying, no, I'll just wait till the next one comes along. I said, Avi, I don't know, do you really believe? This is as technologically advanced, as you say it is, 'cause to me, Sean, I would do anything. If I thought with as much faith and confidence, as Avi does, that these are extraterrestrial technology, I would do anything, especially if I had access to a couple billionaires, and the endowment of Harvard University. So we looked to falsify things, not to prove things, and that was,
of the tangent we just got off them. To our dad's questions, for people to think like that, do you, even though, with everything as you just said, you still have to think about it, you still have to think, is there a multiverse? No, you're right to press me on that, you know, and so what goes through your head without making assumptions, or I mean, what are the, what are the, what are the ideas? So, this might make people uncomfortable. I approach it again as a scientist, and I'm candid, I'm one of the few scientists that's openly religious, you know, that practices his religion, takes his religion seriously, you know, learned Hebrew at age 30, it wasn't easy to learn Hebrew at age 30. You know, I married someone in a Jewish, which is an important thing for the continuity of the Jewish people, in my, in my, in such, I learned in Israel, I take my God in my religion and my faith seriously, I don't work on Saturdays. You know, one thing, when you were talking to Andrew, I started to go off on a side quest here, but you don't have Andrew Huberman or old expert on sleep, and you guys were talking about cannabis, and you're talking about gummies, and you're talking about vaping, and everything else. And I said, I know what Sean needs, and it's, it's not, it's not a product, it's, it's called the Sabbath. You know, we just had this national Sabbath Donald Trump, you work, as much as I think you work, you work seven days a week, pretty much, pretty close. I see it in you. And it's no surprise. I mean, this, this studio is amazing. I mean, first of all, I have to say, this is the second most number of guns I've ever been around on a podcast after the Mayan Biolic podcast, that's a joke, and she's, she's the girl who played Blossom, and was on the Big Bang Theory. Yeah, this is the most, and this is the most impressive studio, you know, I've been on really a nice podcast, I've been blessed to be on it. You've traded this, this huge empire, and it's no secret that your hard work, your work ethic, progenetically, this is something you're like destined to do. But the one unlock that maybe you haven't, and just pretty humble, I'm trying to be humble, I'm not a medical daughter, I'm not even like Andrew, you know, is in the Biolic, but the one thing that saved my life is taking one day off a week. Is a Sabbath for me, it's a Saturday for you, it could be a Sunday. I don't do email. I don't, I don't, I don't do podcasts. If you invited me here, I think, actually, I was supposed to come two days from now, it's a holiday, two days from now, and the Jewish calendar called Shavuot, which means pentacost in English, we call it pentacost, it's a biblical holiday. I'm not allowed to work on that holiday, and so I said, I can't make it on that, but luckily, Laura and Sarah and I think you're all amazing team is just so excellent, an elite for real. But I wouldn't have done it. As much as this is a great opportunity for me, Sean, I wouldn't have done it. Because I want to be with my God, I want to be with my wife, I want to be with my kids, my community, my family, I want to dedicate one seventh of my life to something other than achievement and like Nobel Prizes and emails and Slack messages. And I'm not saying it's a panacea. But I know, like I knew Charlie Kirk a little bit through my relationship with Dennis Prager and Jordan Peterson, and he had his most recent book, which he dedicates to Dennis Prager for introducing him to, and it's about the keeping of the Sabbath, for Christians. And it was a huge unlock for him, it was literally the last thing I ever wrote, and his wife put it out posthumously. So I just want you to consider it. But for me, this is all big disclaimer, maybe it's a little too, you know, legalistic or professorial for me to do this. But I want to say that I take my religion seriously, but that doesn't mean I'm not okay with accepting everything the way it is. In Hebrew, the word Israel means to fight with God. Yisra means struggle, L means God. You know, Islam means submission to God. Those are two different, very different approaches, right? To submit the God and their valid, right? I'm not going to say which one is which. And Christianity is somewhere in the middle, right? There's the acceptance of Jesus as a personal Savior who died for your sins and absolves you of those sins. And God gave his only son, according to Christianity, for your sins, for you, for your personal God. And Judaism, we don't have that concept, but that's okay. We're different religions, otherwise we'd all be one religion. But Yisra means to struggle with God, to fight with God. And if I don't ask questions and subject God in some sense, not to prove them wrong, not to say, you know, like I'm better than God is most of my, 93% of my colleagues don't believe in God at all. If I'm in the 7%, I think it's probably even smaller than that now. You asked Avi about that and he kind of gave you a little wishy-wash hands. As much as I love Avi, I know I wasn't satisfied with that answer. But for me, if I can't question God, if I can't ask for evidence, if I can't demand some level of scientific rigor in my approach to it, I don't feel authentic to whom I am. So I gave you the whole preamble about how seriously I take God and religion, the Sabbath, and why I recommend it to so many people. But I'm also going to approach it scientifically. So what do I hope in science? Do I hope there's a multiverse? I hope there's part of us connected to my attempt to inculcate my science with religion to get a sense of, can we test claims in the Bible, in my case, the Torah, the Old Testament? Can I test them scientifically? Can you test them in a lab? Could you test them with a telescope? Obviously, there's some connection between them, right? Otherwise, Galileo wouldn't have been imprisoned by the church and Bruno wouldn't have been burned alive as we already said, right? The Pernicus published his theory that the earth is not the center of the universe. He published that the day he died because he knew he would probably be tortured and look what happened a couple of years later to Bruno and Galileo, right? So God and science and cosmology, they go hand in hand. For me, I've made it kind of an interesting quest because of those different models that I explained to you, the steady-state, static universe, the big crunch universe, the multiverse universe, and the slow expansion universe. Those are four models of what could have came before the Big Bang. One of them says nothing. One of them says we live in a multiverse that's eternal and has existed for all time. One of them says the universe is slowly changing and modulating, but is eternal. And one says the universe came into time at a specific moment for a specific reason caught by a specific cause. That one sounds the most like Genesis 1, 1, right? In the beginning. It doesn't say after the big crunch, it doesn't say like in the multiverse, God created the universe. It says in the beginning, and Hebrew would actually like that means there's nothing before that. That's right. So what is that? You just projected onto exactly what I'm attempting to do. You constructed a scientific hypothesis that's open to falsification. Okay, pause that. Think about what you just said. That proof, that suggests that there's a beginning. What if we find there's not a beginning? Whatever that means? That has just falsified that theory, called Genesis 30, call it Ryan theory, whatever you want. You could falsify it. Guess what? You just did. You proved that's part of science. To me, that's exhilarating. That means I can investigate whether or not the big bang occurred, whether or not time came into existence versus whether or not we live in a multiverse. I can investigate that and get paid by the regions of the state University of California. I can do it. I would do it for free. By the way, Gavin, if you're watching, I know you're watching Gavin. You've got a podcast. You want to be election. I would do it for free, but please, you know, let me keep my salary. The point is, you just suggested a scientific hypothesis that could be refuted. It's falsifiable. Therefore, by the rules that we explicated earlier, it's scientific question. There's nothing wrong with asking questions, seeking proof. What would you rather have, Sean, belief that Jesus exists in? Can you prove that Jesus exists in? Can you prove it? Can I prove it? Yeah. No. Can you think it could be proven by somebody, you know, a billion, a hundred obi loans or one, you know, someone just off the charts? Maybe. Maybe, but maybe not. Maybe it's not provable. Does that mean that you shouldn't believe in Jesus? Of course not. Of course not. To take away someone's religion is almost impossible. Is anyone who's ever had a jolva's witness come to their house and knock on the door or or more like we like to tell you about? Right? Guess who hates to take their religion away most of all? Atheist. You tell an atheist, most scientist, like your religion, quote unquote, is more dogmatic than any Christian I've ever met in my life. Oh, come on. They're just, you know, patsies or whatever. They don't even know that seeking the questions of the type that you and I just discussed is perfectly kosher, is perfectly acceptable in the context and domain of scientific reasoning. Would you rather have, I bet it doesn't matter to you because you do have strong faith, but if someone said here is proof, like, you know, the shroud of terrain or or there's, you know, we found some, some eyewitness estimate or we found physical evidence of proofs not only that Jesus existed, but that he was resurrected and that he was ascended.
And this is irrefutable proof of the claims of the gospels. And I said, "Here's Sean, here's a book. Do you want to read that book that has all this evidence?" - Yeah, of course. - Yeah, of course. You're a curious person. There are people that wouldn't want to read that book. There are people who would read the book, but it doesn't matter to them. There's a famous story in Bergenbels and concentration camp. A lot of Jews perish there in summer rabbis. And in 1943, I believe, they were doing, they decided they would hold a trial and put God on trial. They said, "Should God have created humanity if it leads to Holocaust genocides and killing?" And they put God on trial, these rabbis, they had prosecution and defense. The overwhelming evidence from the rabbis and the jury was that God was guilty. And God never should have created the world. And you know what they did the very next minute? They said, "Let's go for the afternoon prayers." In other words, some people didn't matter. It doesn't matter if you have physical evidence. It doesn't matter if you have scientific evidence. Their faith is unshakable. And finally, I salute that. I'm weaker than that. I don't have that ability, Sean. I think it is similar. I mean, you're trying to. How do you order? You cannot disprove Jesus' existence. Or God? Or God's. You know what I would assume? I don't assume. I mean, it's probably the same with parts of Judaism and parts of Islam. You cannot disprove it. But you also cannot prove it. Exactly no. And so it comes down to faith. Exactly. Why did you go from. I mean, we know why you went from Judaism to Catholicism. Why did you go back to Judaism? Is it because of your father? No, it was because of. It was actually because of 9/11. Because of 9/11? Yeah. Yeah. So 9/11 happened. I was 28, 29, something like that. And I had been in the Catholic church. You know, the previous religion, you know, kind of experience, I was a Catholic church, which I loved, as I said. I had difficulty with the leadership at the pope level in the Vatican and putting that aside. And then I was, you know, college kind of. I'm so smart. I'll be an atheist, right? You know, like all my teachers and my, you know, and my colleagues. And then 9/11 happened. And I was like, you know what? I know a lot about Christianity and Catholicism from having practiced it for six or seven, eight years, being an altar boy, wanting to become a priest. Everyone was an expert on Islam, you know, after 9/11, right? And I realized I knew nothing about the religion that I was born into. And I felt ashamed. I couldn't read Hebrew. You know, I didn't. I never read the Bible. You know, the Old Testament. I read the Gospels because I was Catholic, right? Very rarely do we go back and read the Old Testament, at least in the church that I was an altar boy in. And so I knew nothing about the Old Testament, the Torah. I couldn't read it. I felt embarrassed, you know, when those had to do it. And I was like, why is there this antipathy towards Jews and towards, you know, Judeo-Christian society and civilization? Why is there this conflict? I knew nothing about it. And so I realized that I'd stop all my learning when I was 13 about religion. And most of the people that you talk to who are scientists, especially Jewish scientists, who are almost all atheists, the last time they encountered religion was on their bar mitzvah at age 13. And for many of them, it's like a graduation from prison, you know, like, they're released. They no longer have to go to temple anymore. They no longer have to sit and learn this archaic language that's spoken on them, exactly 0.2% of the world's population. Like, who the hell needs this when I can do whatever I want? And plus, Hanukkah really sucks compared to Christmas. You know, you ask me about, do I miss it? Yeah, totally. So, you know, the negative exposure that you get at age 13, that then carries through these geniuses like Stephen Pinker and even, you know, Lawrence Krause and Richard Dawkins, I've hosted the most famous atheist alive, right? We're at the, you know, the God delusion and just an incredible intellect, but incredible atheists. They don't have the most basic level that my kids have about what the Bible actually says, what it means. They just project onto it, making it into a straw man, which they can then ignite. Okay. I felt as a legitimate scholar and intellectual, I want to have a conversant level with the Bible, with the Old Testament in my case, at least the same level that have a quantum mechanics. Why should you say that you don't because it's easier? Like, oh, anyone can believe, like Sean Ryan doesn't have a PhD. You didn't go to college, right? You were in the teams. You want to write? Oh, Sean, he knows it. So, you know, but like, he doesn't know quantum mechanics. So, doesn't that show you that it's not that hard to believe in guy? I think these are so infantile. These arguments and the, and the vitriol that people have towards believers in the scientific, in the academic community, in the elite. Let me take one pause for you for one second. You're familiar with the following statement made by President Eisenhower. He said, there's a danger. I want you to finish this sentence of a military industrial complex. Okay. Before he says those words, he says, there's a danger of a scientific, you're not going to know it. I didn't know it till very recently. Before he mentions the military industrial complex and its dangers, which you can testify to as well as anybody. He speaks about the, the horrors that will be inflicted upon society. Should we fall captive to a scientific technical elite? Who's he talking about? Professors. Academia. You don't know. You didn't go to college, Sean. You can't talk to me about aliens and COVID and disclosure. No, you can't. It's bullshit. The, the disdain that, that the ivory tower has for ordinary lay people and, and, and people that didn't go to college. It, it, it, it's a dirty little secret that we don't talk about because it makes us look venal. It makes us look pathetic. It makes us deserving the iron. And therefore, if you get iron, you get attention. And then they might take away our tenure and our tuition increases that go faster than inflation. We don't want you guys to look at that close at us. That's the scientific technical elite. I'm, I'm, Eisenhower warned against that in the same breath as the military industrial complex. You never hear about the former. You only hear about the latter. Why is that? I don't know. People worship college. College is a secular idol that even the most atheistic people worship at. It's a sign that I'm a good parent. I, my kid goes to Vanderbilt. My kid goes to UC San Diego. It's a sign that you did your good job as a parent, according to who, according to secular society. But that's a danger. So getting back to, you know, kind of this, this original part, we went off on this quest a few minutes ago. I think that there's, it's, it's completely legitimate to think about these things and to, and to try to approach them with scientific rigor and to have mutual respect and comedy, not comedy, but comedy, where you can respect the person that you maybe don't necessarily agree with. And so for me, you know, I'm, there's obviously a lot more Christians in the world than our Jews, but I wanted to get back to an understanding what's called first principles thinking. I wanted to say, what are the base roots of Christianity? What are the challenges to Christianity? And they're challenges to Christianity. I'm sure you know, the gospels aren't, you know, they're, they're, they, they themselves are the, and that's what gives them intellectual honesty. They admit there are certain things that they cannot explain, right? Miracles of Jesus did. Did they say, well, scientifically, if you take the quantum mechanical structure of water, you can, no, they said, we don't understand it. But that's what faith means. But I don't want to only have faith. I would like to have proof. Can I convert a faith question into a proof question? I want to do. That's, let's have faith question into a, did God create the universe? Well, if the, if the, if the Old Testament says something and it's compatible with observation, that's not proof, but it's evidence. If the, if the Torah, if the Old Testament says, the universe came into existence in the beginning, the actual Hebrew word, Hebrew is a very rich language. And the actual, it says with beginningness. Like, in other words, God not only created the universe according to Hebrew and the Torah, he created the concept of the beginningness of something. It's amazing. And he think about it, it like gives me chills. It's so much deeper than we get when we're kids. The problems we learn religion when you're like, kid, I went to Sunday school and I hated him, you know, like nobody likes it. But if you approach it as I did as an adult, age 30.
after 9/11 or 28 or whatever, it's much richer because you could approach you with the full arsenal of the tools and the weapons that I've developed as a scientist. And therefore, that which I can prove, verify, attempt or fail to prove will have a lot more sticking power and give me a lot more ironically faith. The best investors don't rely on guesswork. They have an expert by their side in a system that keeps them on track, but most people don't have access to a human advisor. That's where stash comes in. It gives you a disciplined long-term investing philosophy focused on steady habit building, not speculation. So you can build your portfolio with confidence. Stash is a registered financial advisor built right into an app. Stash shows you way more than just your balance. It offers personalized next steps to keep you moving forward in any market scenario. So you always know what to do with your money and why. Stash is guided investing. 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You know, like my colleagues who started the Simon's Observatory with me, David Spurgle, who ran the NASA UAP investigation panel two or three years ago. He's the, he was the leader of it. He's the leader of the Simon's foundation. He and I came up with the idea for the Simon's Observatory, which is this, you know, $200 million dollar kind of level project. My friend, Mark Devlin at UPEN. He created the six-meter diameter telescope and the detectors within it. Like three people can fit inside it, like standing on shoulder. It's insane. Suzanne Stags at Princeton built these detectors that can detect a match at the distance of the moon. I mean, these are like insane people. Again, I would pay to work with them. Then I get to do it for free, right? We have been able to falsify these narratives that suggest there was no period of time when the universe was hotter, denser, more compact. We falsifying claims that dark matter does not exist. In other words, we can't prove dark matter exists, but we've shown that in universes, models, conceptions where dark matter doesn't exist. It's a hundred times more inconsistent with the data. We've found evidence for dark energy. We found evidence that matter in the universe acts like a lens that focuses light. If you put a black hole here, you can't see the black hole, it's black, right? But light would be deflected around it, just the same way that we've detected with our instruments as well. That we can see the effects of the curvature of space time, you and I'll be talked about. We've detected that. That means that we have falsified these notions that Einstein's theories are wrong or incomplete. We do know that they're incomplete at one level because we don't understand how quantum mechanics, the physics of the very small, plays with cosmology and relativity, the physics of the very large. But I'm confident that we'll get there. So to have these abilities to falsify now, have we falsified that the big bang occurred? No. Have we falsified that the multiverse exists? No. If the multiverse exists, that would be a huge challenge for traditional theology. It would mean there is no one beginning. It would mean the universe is eternal and exists in a vast or cosmic landscape, then we can perceive that lies outside of our horizon. We're talking before. If you're out on a boat somewhere in the middle of the Pacific Ocean, a thousand miles from land in any direction, right? Can you detect, can you see another boat? No, you can't. You can't see anything over the horizon. Could you detect the boat's existence? Yeah, maybe there's waves, sauna, you know, sauna grounds, sauna or whatever, neutrinos from the nuclear reality. There's a million ways you could detect it, right? We're trying to do just that. We're trying to see what lies beyond the horizon. If indeed the inflationary epoch did occur that we claim we did discover or later how to retract that claim. It was very embarrassing of the subject of the first book that I wrote losing the Nobel Prize. If we do get to that point where we can have evidence for it, it doesn't prove the multiverse exists, but it kind of rules out the alternatives. That would present challenges to the traditional theological Torah creation story of a single beginning of time. There are people that will attempt to use what are called apologetics, you know, kind of explain things with the assumption that God could do that. As you said, you can't prove God exists. You can't prove God doesn't exist, right? We can't even prove we're having this consciousness experience that we call reality right now, right? We could be some brains in a jar stimulated by electromagnetic radiation by some malevolent demon, right? We don't have evidence for that, but it doesn't mean it's not within the realm of possibilities. So we've discovered a whole host of incredible facts and more to come with the Simons Observatory. In the next few years, where we first get data from this instrument, which was created in the part of the generosity of my late great mentor and friend Jim Simons, who passed away two years ago, established this incredible collaboration with, you know, it's the people. It's like a team without the team, nothing happens, and I'm just privileged to be, you know, at the heart of it and the start of it. I can't remember everything I talked to Avi about, but we were talking about the Big Bang Theory and peering back through time. We had that conversation. How many times can you observe that from Earth? So because if the light passes you by, then it's gone, right? Right, right. Is it gone or does it just keep coming? It's because if you look at a light source, I mean, it'll be on until it turns off, and then it has to, right? Right. The Big Bang is an explosion, so I mean, we're correct. So once the explosion is done, the light is gone. So it would pass you by, right, right? And then there would be nothing after it. If it was an explosion, right? If it was an explosion, it's not an explosion in a sense of, you know, around goes off, and there's a shock wave, that has a implicit bias that you're embedding an event in a larger space, like this room, right? Explosion in this room is very different than the space time of this room expanding, right? So what the Big Bang postulates is that if we're galaxies, at one time in the past, yesterday, we were slightly closer. And if you extrapolate back, extrapolate back, you find that there'll be some point where our chairs are right up against each other, and I like you, but I'm not going to get that close, right? But at the subatomic scale, you could also keep going back to much, much smaller distances, which require much, much more energy per cubic millimeter, nanometer, plank size, whatever. But if space comes into existence at that particular moment, then what happens is a expansion occurs. Space itself is expanding for a long time, but there's nothing, there's no process by which you can reveal the presence of any matter or any energy, because it doesn't exist yet, right? The first galaxies, I've been talking about galaxies, and that's how Hubble, Edwin Hubble, showed that to Einstein that he was wrong. So Einstein believed in a static universe, that the universe is eternal. As everybody did for thousands of years, Aristotle believed that, and it was Einstein, right? Until Hubble showed him evidence data that every galaxy you could see in the universe is not static. It's moving away from Earth at huge speeds, fractions of the speed of light. In fact, it moves away faster, the farther away two galaxies are. So if we're in this room and we brought in, you know, a producer, and they son over there, and this is the universe expanded, we'd all be expanding. You would see me going away, and you would see him going away from you, but you wouldn't feel like yourself is moving away, but I would see you moving away, and I would see him moving away, and he would see the same thing, right? So each one of us feels like we're at the center of the universe, but we're not. This space is expanding in between us. And any process that you emit, if you are having, if you look at me with a new shine of laser at me, and it's a green laser, if you start to move away faster, you know, some large velocity, much, much faster than any Earth-bound speeds, a half the speed of light, that light will go from green to red, because not only
are you moving away, but the wavelength is stretching from short wavelengths to longer wavelengths. Eventually you hit a speed because you're at a distance, and remember the distance times this constant, called the homoconstant, tells you how fast two galaxies are moving away. You get a velocity that's equal to the speed of light, okay? And then after you get beyond that distance, there's no reason I can't be moving faster than the speed of light away from you. And at that point, what do you see? So right now you see me, and I'm like waving at you, right? And I keep waving at you, and you keep expanding and eventually you hit the speed of light. And the last thing you'll see for me is this. It'll appear frozen, the beam of light that I'm producing, the photons of light that I'm generating will keep shining towards you. They'll get red shifted to longer and longer wavelengths. You'll see me, you'll see me frozen, waving, and you'll see me extremely red. And the same exact thing happens as an observer falls into a black hole. They don't get ripped apart at the so-called event horizon. You and I have talked about this in great detail for you guys to episode 146, thank you. Episode 146, you talk about the falling into a black hole. Nothing happens when you cross the event horizon. People think it sounds kind of cool, event horizon? No, something happens when you get close to the singularity that's called spaghettification to get ripped apart, that's irrelevant. The astronaut right before it falls into the black hole, he waves it, that's the same thing. And you see him, he's frozen, and he's very red. And I'll just keep continuing as long as you're around to look at him. So the same thing happens with this light, with any process in the universe. And it just so happens that in order to see something that's beyond the event horizon, you can't use light. You have to use something else. 'Cause light can only travel at the speed of light. It's the fastest speed there is. But there has to be some other mechanism by which you could see these processes, if they existed before this part of the Big Bang occurred. And that's what we're looking for. We're looking for not waves of light, but waves of gravity, which is the actual structure of space time. Space time, again, UN Avi did a lot of the pre-rex for this course, you know. You talk about waves of gravity. Gravity and space time is a dynamical object. It's not a frozen ice block. Gravity means that distances and time shift according to the local mass distribution there is. So when the universe had all the mass it will ever have at the beginning, it had a lot of gravity. And when the expansion took place, that gravity could be converted into a solitary radiation called gravitational waves, that's what we look for. It's not light. It's space time itself. And we've detected that as-- How are you able to see that? So we see that in the distortion of space and time. Remember I said if there's a black hole here, you could actually see something over there because light from over there would get bent by the black hole and it would appear to be coming from over there, but it's actually coming from behind us. That's called gravitational lensing. Einstein predicted this phenomenon in the 1930s. He also predicted this phenomenon gravitational waves. It has been detected on Earth from two black holes that existed a billion years ago, a billion light years away, crashed into each other. Each one weighed 30 times the mass of our sun. What was left over was a single black hole that weighed 59 times the mass of the two of the sun. So you had 16 solar masses in the beginning, 30 and 30. They crashed together. They make something that's only 59 solar masses. Where are the rest of the energy go? It all went into shaking up and vibrating space time. Those ripples in space time mean that if you were there, at one moment of time, your weight would increase on a scale. If you put a scale in here and a gravitational wave comes through, you one second at one moment of time, you get heavier, then it oscillates and you get lighter. Heavier lighter, heavier lighter, and that process would occur at the speed of light. But it's not light. It's the separation of entities and events in space time itself, the curvature of which gets distorted if the universe had a singularity, which would mean it would only live in a multiverse. They all go together. So we haven't discovered that yet. We may never, even as you said before, eloquently, you can't prove, you can't disprove it. What we can disprove alternatives to it. There's an alternative that says, "We came from a big crunch." Remember I said, "That's a possibility." That, it turns out, for technical reasons, can be disproven if we see these waves of gravity. The waves of gravity cannot occur in a universe of the big crunch, but they can occur in a universe with inflation and the multiverse. But one cannot be proven, but one can be falsified, proven wrong. - You don't want another thing that I was talking to Avi about is when we talk about the universe expanding, I was asking him about the edge of the universe and I didn't quite understand what he was talking about. So if we're expanding, space is expanding in between us. That's right. Where's the edge of this? So there doesn't have to be an edge, but there may be an edge, but there doesn't have to be an edge. And it's a very ancient question. Aristotle asked, "If you go to the edge of the universe "and you throw a sphere, where does it go into?" That's exactly the same type of question you're asking. So what we do in science of cosmologies, we say that space-time is the set of all possible places in x, y, and z and in time. Anything that can occur occurs in those four dimensions. You told me to meet you here exactly in this latitude, longitude, altitude and time. You specified all those different things. You don't have to specify anything else, right? That's specific. Now, if a gravitational wave comes through this room, it actually changes both the space and time, microscopically, but technically it does. And if two big black holes crashed by it, it would do it a lot, right? That would be a huge, huge disruption to space and time. It would change my coordinates. I'd be at a different x, y, z, time, altitude, whatever, right? But all of space and time can exist infinitely like an infinite set of monkey bars, just going out in all directions, all possible directions, where space is there. Now you might say, "What is that space made of?" What's in that space? In other words, our universe here is within our horizon. Just like you got onto the beach in San Diego, I can only see out what, you're a navy guy, tell me. You can see like four to seven miles at sea level, out to shore, and then your horizon disappears 'cause of the curvature of the Earth, right? Does that mean there's nothing down? Of course not, right? There's definitely stuff beyond that. People didn't know that for a long time, but now they did, right? So that's your horizon. Your horizon on a two-dimensional surface like the surface of the Earth is a circle. Your horizon in a four-dimensional universe is a sphere. Every event in space and time that's ever occurred that we could just now get information from lies within our light sphere. We call that maximum light sphere, the farthest distance that anything could have traveled to us here, we call that the particle horizon or the observable universe, okay? But my observable universe looks different than your observable universe because we're not at the same four-dimensional space-time location, you're six feet away from me. Light travels one billionth and one billionth of a second travels one foot. That's a speed of light. So I actually see you six nanoseconds earlier than you are right now. You look wonderful, Sean, by the way. I see you, the sun, eight minutes away. We don't know, the sun could have disappeared right now. We won't know for eight minutes. It's not likely, but it's a hypothesis you could test it, right? The universe, the Big Bang, the stuff that I study happened 13.86 billion years ago. So stuff could have traveled to us from that age and you take that age of the universe times the speed of light. You technically have to modify it by the expansion of the universe, but once you do that, you get the maximum distance I can see where I am right here. And that's a sphere whose radius is 45 billion light ears. Okay, so imagine that centered on me. But now go over a couple billion light ears to this galaxy with these two black holes crashed together. That has a slightly different observable universe. Now, what are they seeing? Are they seeing into another universe? No, they just have access to a different light sphere of space that could have communicated with them. Just another perspective. Yeah, and a billion years from now, we'll be able to see that. Now, if there's another universe there, let's say there's another universe. God comes down, Sean, there's another universe. Episode, whatever, 1400, you'll have the other universe, all right? But it's 10 light ears away from our universe. You won't know about it for 10 years, right? So we could exist in this vast universe. It could also be that we're in a compact finite universe where it would make sense to say that there isn't edge to it. Just like there's an edge, there isn't edge to the earth, right? The edge is in the perpendicular dimension to the two-dimensional sphere. In the context of cosmology, the edge of the universe could be if we live in a spherical universe. But instead of having x, y, and z, it has x, y, z, and w. It's a four-dimensional sphere. Nobody's brain, not even obvious, can comprehend what that actually looks like or means. But mathematically, it's a perfectly valid question. We can approach it. And we can ask, what would be the signature of another universe that bumps into our universe? And people make predictions about it. But there's zero evidence for that.
There's zero evidence that our universe is a compact closed spherical universe Or that it's an open hyperbolic universe right now our best evidence is that our universe is infinite in an extent But that infinity is just a mathematical infinity We have no idea of right beyond it could be another universe and if you ask what's in that other universe? I haven't I've a thought exercise for you When the Artemis we should talk about lunar landing conspiracies because you had on this guy a Gentile AJ Gentile and AJ Gentile. That was an awesome show. I love that guy's one of my favorite people He's he's he's so good at what he does you know like mentioned hard it is like and you know It's hard to interview people, but then also to do like explain her content where you explain things But you know I was I can never take the professor out of laboratory And so he made a couple mistakes in that episode and I would love to talk to him sometime Maybe you can introduce me, but one of the things he said is that That the the Soviets beat us and every possible thing and this is part of the conversation You guys had about how the moon landing didn't happen right or how people could say that I don't actually know what you believe And this is a case we could say believe but we have evidence, right? What do you believe? I know for a fact We landed on the moon how do you know I know for a fact because we have physical evidence We have eyewitness evidence. We have photographic evidence. But the best evidence we have Sean The best evidence we have comes from the Soviet Union What's that Soviet Union on July 19th 1969 the Soviets knew that the eagle was on its way to land on the sea of tranquility They had launched six days earlier a spacecraft or their own uncrewed. No men were on it But they were gonna go and land on the moon and they were gonna take samples And they're kind of wanted to steal the thunder to arrive a day earlier and and kind of get a little bit of the credit And they also kind of hoped that we would crash and they would all die I mean the space race was insane, right? I mean it was incredible The Soviets coordinated with the Americans on that very day Because they were worried that they would crash into the eagle and They coordinated their telemetry and we still records of their telemetry And the communications between the bike and our cosmic drum and cosmic stand where they would do their launches and recoveries and a NASA Apollo they wanted to avoid a huge PR disaster Especially since they thought we would die they thought they would actually cry people thought the moon landers would Keep going down through the surface of the moon. They thought it was made of like really loose talcum powder like dust And that they would actually be unstable and would flip. They actually most people gave it 50/50 odds In fact, Nixon had recorded a speech in case the astronauts died and You know, and he pre-recorded it and so he would play it on TV and give their condolences They also plan for a contingency that they'd be lost in lunar orbit or that they would miss the moon and go off into deep space and become a satellite never to be found again Right, so so the Russians confirmed it that the coordinated with our telemetry when they landed they congratulated President Nixon And then they also landed on the moon and the first landing they landed these retro reflectors called laser lunar laser retroflectors You run our bicycle and you see like a bike Tail light or the reflectors on the back of a bike, right? How does that work? How does the bike know where your car is gonna be? You could be at any angle any bearing any distance, right? How does it know to reflect but they have the specially designed retro reflectors that always will find the target back to earth and We bounce lasers off it my colleague you see a San Diego Became retired recently Tom Murphy. He bounces lasers off these retro reflectors left by the Apollo Moon landing Apollo 11 and he can measure the distance to the moon to the thickness of a paper clip One millimeter or so thickness, so we know the average that was left by these astronauts now the Russians left these things there too But the Russians also over flew Both are landing sites and their own landing sites and Tom Murphy and his colleagues found the Russian retro reflectors as well as the American ones exactly where the Americans said they put it and exactly where the Russians said they put it and the last kind of Little bit of convincing evidence One one part and but I do want to get back to what Gentile said that's wrong because I think it's important is that Is that that The the positioning so you could maybe sort of fake data whatever but imagine right now Imagine like Artemis - which just went around the moon, right? I think even you know I debated Bart Cibral on Pierce Morgan the day of the launch and he he was like well Maybe they're going now, but they couldn't have gone then I'll get back to that in a second That's totally fallacious and ridiculous argument that I refuted on air with with him and peers actually piled on and called them full of shit to his credit, but These the very day that Artemis launch and then went around the moon this last month in April Can you imagine laying on the moon? Not this one. This one was just going around the moon. They were supposed to land. They will have changed No, no. No, it was always planned to do this first one went around the moon. No one was in it Second one went around the moon with people in it third one's gonna be people in it. I sorry unmanned landing on the moon fourth one's gonna be people landing on the moon Okay, let me let me just understand. All right. All right. I just want to know why don't we just land on the fucking moon? We did it in the 60s. Okay, right. Would you get why are we doing all this crazy wild shit? Let's just go back would you get on with your kids and being here in your wife and your empire? That is so impressive would you get on like the second flight of of any kind of military hardware built by the lowest Hey, if you haven't noticed, I'm a risk taker. I know you are, but would you do it now? I asked Elon Musk on my podcast Would I do it right now? Yeah, would you take it right now? Right? So you do things in steves Four or five years ago Kitty Hawk was at the first time that the right fire had ever flown Oh, they didn't put themselves on at the first time they did test flights prototype flights. That's all they're doing There's nothing the farrier's there, but let me just get to the closure of this one argument a thought experiment I want you to consider April 5/6 when they went around the moon. Can you imagine Ayatollah Khameini Junior? Oh, hello Hi, Mashallah, Mashallah president president Trump. Congratulations Every country on earth, including China, which had stolen a lot of our nuclear and space secrets in the 1970s China Soviet Union all these countries called up and congratulated the United States Now they were enemy. It's hard to think of it now because we cut it like whatever whatever right But can you imagine like the Ayatollahs right now calling us up to congratulate us? In other words, they would be the most glorified and happy people on earth to have us Not get there and prove that we didn't get there because that would leave glory for them So that's a psychological kind of component evidence for it. There's overwhelming scientific evidence for it The evidence against it is minimal. You already mentioned one of them, which is well how come they did it? You know in the 60s, but we can't do it now. I mean you said that Gentile said that Polyflatius argument. I love you. I love Gentile. I'm gonna tell you that's a flatius argument and I'm living proof of it. Okay The first person to ever set foot on the South Pole rolled Emerson. He's an amazing guy He went from the North Pole. He almost was the first person to reach the North Pole He lost turned around and went on a huge expedition and became the first person to land to to reach the South Pole The South Pole nowadays. I said I take a C-130 flight a C-17 flight land in the ice Then I take a ski C-130 and it takes me a week. Okay. I'm poor Brian. You know pay it play the violin for me It took them six months Just to get there then they got there they would get there in spring because that's the only time you can really travel there Then they have to wait until the following spring they'd stay on the coast of Antarctica for six more months until or seven or eight months To before came warm enough that they could ski Cross-country ski up 9,000 feet of ice Okay, and then they got to the South Pole and then had to get back before winter started And if they missed it by three weeks like the British team Robert Falcon Scott was the second person to get to the South Pole In 1912 and January 1912 three weeks after Amos and got there in December 1911 Everyone on Scott's team died Every single one of them froze to death the most excruciating way possible 10 miles from a cache of supplies It would have saved their lives. They all died. They didn't know about it for another year And then they got back to England a year after the hot. Okay, we're just okay So 1911 our Norwegian guy sets foot with his teammates and the South Pole You know in the next Norwegian to get to the South Pole was strong. I'm not expecting you to 1996 Wow, so if you're a 90 Bart Sibro 1995 you say oh wait How can we went there with technology with a boat a wooden boat like Shackleton We did that a hundred years ago, but we can't do that now. It's completely fallacious I mean, that's not a good argument. Okay. There are other arguments that are better like the Van Allen belts and so I don't think that You know that I'm not saying that we didn't go Okay, it sounded like I'm not saying we were open to the hypothesis at least. I think it's fucking weird That we haven't been back Since the 60s, but do you know why we didn't go back to the South Pole or anybody on earth? Uh, so first of all is it was a belt thing that you just brought up. I also think is very odd And there's that guy in NASA that said we lost the technology. I'm sorry. You lost the fucking technology Okay, there's no NASA guy at NASA It's like saying the guy in the Navy seals or something like that could mean a lot of things right it doesn't Well, I mean, I'm just not familiar with yeah, I know
But when you have a platform like you do and AJ has his platform, I'm just, I would love the scientific rigor to kind of, not, you have to get a PhD in quantum mechanics actually. I'm just saying, when you think about things, what should be your default base rate hypothesis? Should it be that this is, this is kind of fake or, you know, as, as Candace Owens said, this is faking gay, right? So she's supposed to be like America first, right? She's supposed to really love America, be patriotic, it's not only the greatest achievement of America, but it's the, this is one of the greatest, I think it is personally the greatest achievement in all of human history. And I say that as somebody who's a pure scientist, going to the moon, yeah. Well we did in a very short amount of time, but it took a level of, you know, just, just incredible, incredible, you know, cooperation and technology, hundreds of thousands of people coordinating across decades and the evidence against it is so minimal, what's frustrating as a real scientist is say like, look, no, rather these things be false than a scientist, right? Because I get paid not to prove people right. My job is not to prove frickin' avi-lobe, right? My job is to say, no, you're frickin' wrong. Here's a better explanation. Let's go test that. And his job as a good scientist is to say, thank you, Brian, you know, you, you use your experimental technology. I'm a theoretical physicist. Let's work together and come closer to truth, okay? That's the way science should be done. Like the default assumption is America lied, you know, they lied about COVID, I mean, you know, for many reasons I wish COVID never happened. And I've interviewed, you know, and I'm best friends with a, one of close friends with the director of the National Institute of Health, Dr. J. Bottacarya, tortured by Anthony Fauci and Francis Collins, horrible thing. And you know, he's a Christian, he's an incredible human being, you know, he, all this stuff that you're kind of talking about here, you know, at the beginning you asked me if I thought it was a good idea for a country to lie to a citizen. Yes. Yeah. Now we're wondered if we fucking landed on the moon because a lot of lies have come out of the government. I see. You're a scientist. You know, you understand how to sift through all this data and I mean, you just spent many, many years studying all the things that it takes to know about landing on the moon. I'm a Navy SEAL. I spent those years fighting a fucking more. Yeah. So what I'm saying is, you know, you're looking at straight facts and the rest of us are looking at contexts, you know, and when you have, when you add in the context and you see a government that continuously lies to its fucking citizens, citizens are no longer going to believe the government. I guess is a question. And so then all these conspiracies start to happen and distrust and then they start digging into everything. What were you saying about Candace? So Candace, what I'm saying about Candace is that the America firsters, the American patriots and so forth. And I'm not questioning her love of America or whatever, just saying, if this is the greatest accomplishment that a human being has ever made and it happens to come from the country that you profess your love for and allegiance to as I do and as you do, right? That it doesn't mean they're flawless. I mean, who's flawless, right? I mean, who do you agree with 100% of the time? Like, I'll say my wife, right, but that's a bad idea, right? Sometimes you contradict yourself. I contradict myself. With your wife 100% of the time, that's bullshit. Honey, if you're watching, you know what I did? I made her mad the other day. I said, you know, honey, whenever I'm driving around, like I got to turn off the voice activated directions on the GPS, she's like, oh, that's so romantic. You want to listen to me? I'm like, no, I don't want two women yelling at me while I'm like, no, so you don't agree with everybody, right? You don't even agree with yourself. I reserve the right to be wrong all the time. And in fact, that's the best thing a scientist should do. We should have the freaking balls to say, we're wrong, not just one more, right? From the standpoint of having skepticism of your government and whatnot, you always have to ask the question, who benefits from it, right? Who would benefit from the moon landing not occurring? Is a question. You can ask that question. You can also say, what are the downstream tangible benefits from doing that work and landing on the moon? You can ask, what were the technological impediments? But if you start with a hypothesis, you know, it's like an atheist who says, like, I'm going to start the hypothesis, God doesn't exist, Sean, right? And you have the burden of proof to prove to me that God exists or doesn't exist, right? That's not approaching things scientifically. If you start with, there's a term in that for, it's called apologetics. You start with the conclusion, you reason towards the conclusion, best and the best available data, but you're not going to like refute God, like William Lane Craig or Baron, the Catholic priest, I'm blanking on his name, I think his Baron is the last name, Robert, they're not going to come to a conclusion that disproves God, right? Let's just be honest. That's not necessarily what their, you know, focus is going to be on, right? But they're going to give explanations why God is a more plausible hypothesis than anything else. But if you, and so there's purely scientific reasons, you can debate what happened when we went to the moon. How can we didn't go back? I think I gave some credibility to the argument that just because you do something once, it doesn't necessarily make it easier to do it twice. Like, appears Morgan on his show to give him credit to Bart Cibral. He said, I flew on the Concord, you know, in 2001, and I haven't been on a Concord since. Like, how come there's no freaking, you know, mocked to transportation right now? How come that's not probably ever going to happen again? How did we go back into, you know, and that was built, that was built in 1962, the Concord, it's before the Apollo way, we can't do that now. It's an argument that sounds good to people that really might come into a conversation with a predisposition. That's fine for a person who's not, who's not maybe wanting to portray themselves as being a scientist. You're not a scientist. Age is an scientist. But, but there's one more thing about the Van Allen belts, which is the other thing that she, Candace Owens, really got from this guy, Bart Cibral, and then I think AJ kind of got this too. So there's this radiation belt that surrounds the earth, and it's called the Van Allen belts. It is supposedly this impenetrable, instantly fatal trajectory. No person can get through it, and there's no way to get to the moon with that going through these belts, right? I mean, that surrounds the earth. So that's, that's like saying, there's no way, let's say you want to land on Saturn, right? For whatever reason, Sean's deciding, we're taking the podcast on the road going to Saturn, right? The Saturn has this ring system around it, like a belt around it, right? So if you're going to land on Saturn, fine. You probably won't take the trajectory that goes right through the ring system, right? Just because there's a belt exists, doesn't mean that there's not a symmetrical, a trajectory that you go through, it's totally safe, right? The asteroid belt. You think about the asteroid belt. You shoot a spaceship through the asteroid belt, you're going to get destroyed. Now you won't. If you shot in any direction, you take any trajectory you want, and you'll go out to the edge of the solar system, there's almost a 0% chance you'll hit anything, even though you kind of depict it as an asteroid belt. The Van Allen belts are like that. They're highly concentrated in certain regions. There's two different belts, an inner belt and an outer belt. They mainly go around the equator, they'll launch us to the moon, go around the pole. So there's no danger. There's no exposure to it. We know how to do it. Satellites go through it all the time and anyone who's ever seen a roar nose about it. It's not dangerous. It's not fatal. It happens to be about the equivalent of two or three chest X-rays, which you and I get every year, every couple of years, right? So there's some radiation. It sounds scary. You know, one of the Patreon questions that I answered for my fellow Vigilance Elite Patreon members was about how do we make the concept of nuclear power less traumatizing, less kind of scary to the average person? How do we get rid of radiation? So save that. You have to join Vigilance Elite Patreon, I'm trying to sell that. My fellow members, so go over there and you'll find out my answer to it. But it's sort of, it's manipulative to say, radiation scary. Therefore, we didn't go to the moon. Let's look at it scientifically. Let's look at the evidence. If you spend any time off road like I do, you already know how easy it is to end up second guessing where you're at, whether you're still on a legal trail or if the route ahead is even worth taking. That's why I've been using on X off road. It's an off road navigation app that shows trails, public and private land boundaries, places to camp and detailed trail info all in one place. And what makes it really useful is the amount of actual trail data. You can check difficulty ratings, terrain details, trail photos, even recent reports from other riders before you head out there. The other big thing is you can download maps ahead of time, because once you lose service out there, your phone is pretty much useless. But with on X off road, everything still works offline. And if you're riding with a group, their location sharing feature lets everybody stay on the same map so nobody gets lost or separated. What I like most about it is it gives me a lot more confidence when I'm exploring somewhere new. I'm not wasting time backtracking accidentally ending up on private land or trying to figure things out once I'm already deep into the trail system. I can plan ahead, know what I'm getting into and spend more time enjoying the ride instead of worrying about navigation the whole time. Watch on X off road in the App Store or Google Play. Thanks for watching.
We pretty much just wrapped up the moon talk, but it did bring one thing in here because you gave me a little shit for saying the NASA guy. So here is the NASA guy. Go ahead and hit play. Let me know what you think. I'd go to the moon in a nanosecond. The problem is we don't have the technology to do that anymore. We used to, but we destroyed that technology and it's a painful process to build it back again. When you sub that just now, it sounds stupid to you. So that was what's his name? I'm Don Pettit, a NASA astronaut. So I sounded like an idiot because I didn't know his name or what he was. So I had to go find it and show it to you. That's fine. What is your take on that? I'm just curious. So no disrespect to Don. Again, more courageous than I'll ever be in a launch on top of a 60,000 tons of TNT equivalent and risk your life and do everything that he did. So the one thing that's more complicated than physics is psychology is the human mind. So I'm not going to speculate what he meant by it. I'll just say it's the technology can't be destroyed, right? Technology means a lot of things. It means the physical rockets. Do we have Apollo, Saturn, five boosters anymore? No, so we don't have those. Do we destroy them? Yeah, I mean, I've got a 50-cal bullet that my brother and little Jim Brewer got me. I use it as a bottle opener. Is it is it destroyed? Yeah, it's destroyed. It has a hole in it and the gunpowder has been taken out and it's not alive around, right? So we do we destroy it. Do we destroy the know-how on how to do it? Do we just destroy it? That's the way I take that. Is they destroyed the know-how? So it destroyed the blueprint. So it gives a shit about the fucking booster or whatever or the rocket or whatever it is. We can build it again. It is true, right? I don't think that that's everybody's doing these autonomous systems right now. They're building disposable units that can be very cheaply and easily recreated. I have a collect aviation, you know, kind of antique artifacts. I have a B-17 propeller in my hanger in San Diego where I keep my plane. And this thing is amazing and there's zero chance that we could ever get that to work. We could ever reconstruct a B-17 from scrap. There are a couple B-17s flying. I think there's three laughter, something like that. Again, if we had an infinite amount of money, infinite amount of money, do you think that Elon or do you think that are our greatest engineers and scientists couldn't reassemble and build a P-38 or a B-17? Of course we could, but you have to ask, like, what's the purpose of that? We have been there. We have done that. I actually think there's a stronger. It's the purpose of that. What's the purpose of rebuilding? What was the purpose of coming to North America again? Well, what was the purpose? So we are-- So that'll new fucking land to expand an empire to thought, what would the purpose of going to the moon be? I don't know, to claim the fucking moon. That's true. Do we know there's the shit up there that we don't need? Same with Antarctica. Why do we go out? I interviewed this guy, Steve Quast, and Helium-3. He's talking about we need Helium-3. It's going to be great for energy. Can't remember everything about the conversation, but you know what I mean? Like, why aren't we going up there and getting fucking Helium-3? Sure. You know, and so I sense that you get frustrated with skeptics like me or people that don't believe, but what really is the problem is the scientists are doing a very shitty job of explaining why the fuck we haven't been back to the moon. Yeah. To P-brains. A, you're not a P-brain. B, my job is to answer questions. And I get paid to answer questions, right? And so what a teacher is, at heart, I'm a scientist, right? And scientist answer questions. I'm a professor. I'm a teacher. When they say something like that, there's different reads to saying that. Like, where's the car to your 16-year-old? Oh, I destroyed it. Is it destroyed? Like, is it being on the laws of physics to reconstruct it? Is an astronaut the right person to ask this question about the technology? Do you know the astronauts have almost no knowledge of the engineering and the building of it? Some of them weren't even pilots, right? So that's why I kind of asked you before. Is my lack of domain expertise in the operator, special teams and the Navy aviators? Does that preclude me from being able to ask questions that might be uncomfortable for people that believe things that they've seen that I don't believe there's evidence at the scientific evidentiary level for. So that one clip, it doesn't shake me. It doesn't frustrate me. It doesn't, it doesn't, it doesn't make me feel like, oh, well, I really got me. It makes me feel like this guy said something. I don't know the full context. But I know for sure, if we had wanted to, there's absolutely no reason not to. Now, why didn't we want to? What was the cold war? I mean, do we go back and keep bombing Japan and bombing the Soviet Union collapse, right? Part of it was because of the vast military expenditures that we spent during the space race. And there was no longer sustainable in the late 1980s in the Berlin and Fall. Do we fire a shot? No, I mean, not really. I mean, you guys probably know. But once you once you do a thing, do you need to do it again? Like, it's not like running a marathon, right? Roger Bannister broke the four-minute mile, 80 years ago, something like that. People still want to break the four-minute mile, right? They keep getting better and better. Will that person, the second person to break the four-minute mile? Do you know his name? No, but I mean, yes, we do need to do it again. I mean, since the, since the beginning of time, it's been expansion of empires. Yeah. The entire fucking planet's occupied now except Antarctica. So I got 800 people down there. But you know what I mean? So we're in what is the fastest growing? Is the world overpopulated? I don't think so. I think it's the opposite. I think we're running low on population. If you took every person on earth, Sean, I guess what I'm saying is it's all been settled. I'm not talking about an overpopulation or thing. I'm talking about expansion of empires, which humanity has been doing since the beginning of time. Right. The new expansion is space. Absolutely. Space, I mean, I can't, I don't know the correct terminology, but it's been, it's been told to me by several people on the show that the real estate law or whatever the fuck you call a space. Space law is the fastest growing. It is. You know, sector of legal or whatever. Legal real. Space force was created in the first version of the US military. Created in 50 years, six years. So can't tell me that, you know, it's not important. And then Steve Quas is saying China is basically on the moon. I don't know if that's correct or not, but that's what he says. But whatever somebody's going to fucking go there and somebody's going to claim it, why haven't we been back? It's been how long? 60 years maybe? If we had this conversation, you know, 46 days ago, we could say we haven't been back to the moon in 56 years or whatever. But now we have it. We've been around the moon. We went farther than we went, even during the Apollo mission. We're testing this thing out. I always say, you know, someone said to me, do you want to be going on a SpaceX rocket, go to the moon? I'm like, yeah, I want to be a customer 10,000. Like, I don't be the first guy. You know, how many aviation accidents occurred during the first 10 years after the Wright brothers, what the fatality rate is? Nowadays, you get on a plane. The fatality rate is 0.001. The only fatality in America since 9/11 was right after Trump's inauguration. These helicopter had a commercial jet. That was like the first mid-air collision that resulted in death, or even Sully Solenberg landing on, there aviation safety has gotten down to the sub 1000th of a percent level of fatality risk. Space is still about 3%, 4%. Now, part of that is intrinsic to the environment is the most extreme hostile environment, which is also some of the reason why we might not ever get to Mars and colonize Mars. We might not have the ability. We might not have the wherewithal, but in today's dollars to reproduce what we did, just go to the moon, walk around, do the samples, if you'd want to do that. It's sort of the analog of what I said before. Go to the South Pole, be the 10th person to get to the South Pole. You have to justify a huge amount of blood and treasure to do that. And I'm sorry, people in America are not willing to see astronauts die. You know, we've gotten to a point where they, if they were to have one loss of an astronaut, it would set back probably the future lunar colonization by an incredible, you know, maybe decades. And the budget that NASA is dedicating towards this is menace, you know, women in this country and many men, I don't know, your audience. Now, women spend more on lipstick in America than the NASA budget. Tell me how you're going to get to colonize the interplanetary species like Elon wants to do with a budget that's $25 billion. And some say that's way too high. We should be spending on poverty. We should be sending it. And you got to be sympathetic to some of these things, right? So the question is one of national will. We had pride in the 1960s. We wanted to beat Russia. We don't really have that with China. We have a very unusual thing with China in our relationship. You know more about the geopolitics than I do. There's an interesting thing that just happened in, didn't really make much media attention. I saw it in the New York Times reported that China was trying to build radio telescopes in Argentina and optical telescopes there. And the US government could coordinate with Argentina and froze the parts at the port in China. I'm sorry, at the port in Argentina. Why are they doing that? Well, guess what? When we go up and study the cosmic microwave background, look for the big bang and stuff like that, we're on top of these mountains. We're looking for infrared. We're looking for heat. Well, guess what? So are the Chinese. They're probably looking for infrared.
from a B2 stealth bomber, you can conceal its radar. That's what stealth means. You can cool the exhaust, but you can't defeat the second law of thermodynamics. When an SR-71 is cruising at cruise speed, the windshield gets up to 600 degrees. It had to be three inches of quartz. Well, quartz radiates in the infrared extremely well. You can pick that thing out like a hot knife gone through butter. So these are not always peaceful coordination and scientific benefit. But to coordinate something on a budget of $25 billion, I mean, it's almost nothing. And so I don't think we're going to get there again, but not because it's some, and that's today when people are excited about the moon Elon Musk exists. He didn't exist in the 1980s or whatever, right? And we had the space shuttle program. That was kind of a mixed failure blessing in some ways. I bet it was one of the commanders on. So look, the disposition has to be like, what is the cost-benefit analysis? Is it worth sending people there if they have a high risk of dying? Would you want to be, let's say it's safe, you know you're not going to die, but you're going to go on a one-way ticket to Mars. And your crewmate's going to be Elon Musk, because he wants to go there too. Are you going to do that? You love risk. I'm telling you, no risk. We're not going to die. - I mean, you're talking to somebody that fought in three different wars and several different conflicts. - Yeah. - I'd have a huge appetite for risk. And I have an even bigger appetite for risk when it advances humanity, advances our country, you know, things like that. And so if I thought that for one second that by reaching the moon with Elon Musk for whatever reason is going to advance humanity and make a fucking better life for mine and yours kids, you bet your ass I'm going to be on that flight. - So then we have to look at what is there? - There are a lot of people that are just like me. But aren't there Sean, you know, I'm saying I said love and respect. But like you were ordered to fight in these wars. - That was an order to fight. - Well, you just fucking joined to fight. - You joined to fight, right? But once you're there was I understand it, right? You don't have that much say what you're going to do and which words you're going to fight in. In other words, do you, do you, if you knew everything that you knew now, are you going to, are you going to say that like, if this is going to advance humanity, that's what they told us to in Iraq. Like this is going to benefit. It's going to protect America. It's going to do all these things. Let's leave aside whether it did or didn't. But you did it, you sign up for it. Did it, did the promise or the expectations? Did it match, you know, all the hardship that you went through and you fell in love? - It was another lie from the US government, right? So what about this, you're saying you're going to do this because you love it. - I said, if I knew for a fact that it was going to advance humanity and make a better life for mine and yours kids, I would do it, you can bet your ass on it. - It's funny. - That's what I said. - I asked Elon, on my podcast, I had him on very briefly. And I said, Elon, you say you want to go to Mars, you want to live on Mars, you want to die on Mars. I said, let's hope it's not on impact, you know? I want you to die on impact, buddy. I think you're too important. But you have a 13 to 14 kids, we actually don't know how many kids Elon has. (laughing) It's either very lucky or very unlucky, but he has at least 13 kids. I said, there would be a day when you'd have to say, they're not all going to go. His kid X, Jaws, 72, you know, the one that's named after the Blackbird, right? He has an unpronounceable name. He was in the room. I could hear the kid talking on the podcast when I was talking to Elon. His mom was on the podcast. She was a big space and recorded it. And I said, how are you going to say goodbye and do another kid? He lost a kid. You know, it's just the most traumatic thing that a human being, you and I know. Like, I don't even like talk about it. A parent loses a child. You can't think about it. Now, you're volunteering to lose 13 children. Like, how are you going to do that? And it was the first time I ever heard of Elon being on a loss for words. You can hear it on my podcast. I have it on my YouTube channel. He couldn't say it. His mom, Mae Musk, comes and says, "Oh, let's not talk about that. Let's not talk about sad things." So it's sad. I know you do it. Again, you have a courage that mortal men like me, I'm telling you, I couldn't do it. But it's also, to me, it would have to be justifiable. And I know as a scientist, I can't know, for sure, guaranteed. It's going to benefit your kids and my kids. I just can't do it. And as a scientist, I have to say, what could we do with Sean Ryan, as fucking badass as you are? And no doubt that we can't do with Optimus 27 equipped with chat GPT 100. In other words, why send a human being with a wife, kids, family, people that love you, people that depend on you, people that are watching right now, whose life and ears you're in right now. I mean, you're going to take that away. Tell me, convince me you can't do that with a robot or AI. We haven't talked about AI. - What do you want to talk about? - I think AI has a lot of things in common with aliens and that it's sort of, it is potentially kind of a surrogate replacement secular God, that it gives us the chance to do what God did. You know, God made man, man, Adam, and Hebrew means earth. God made man out of earth. We have that impulse, tower of Babel. We have that same urge, that same desire, that same craving to be as God's. That's why, look, I don't read the Bible as a science book. Sorry, you know, I don't look at it. Where's the Hydrogen's 32nd wave phone? It's not in there. It's not what it's supposed to do. I don't read Avi Loeb's books to learn about how to be a better member in my community and a better husband. They're different purposes, right? When you look at that book, though, the Torah, the Bible, the Old Testament, the New Testament, you look at what they are designed to do and the time that they were designed to do it, and are still relevant in this age. You know, I always joke, I wish I'll have God's book sales. You know, like 1% of God's book sales in 3,000 years. There's no book like that, Sean. You can't tell me there's not something quasi-divine even if you don't believe. Something that's lasted for 32 centuries, that's applicable to my daily life right now. I read the Bible, I read Jesus, I read the New Testament, I read every day, I read Stolix, I read it all, why not? Why wouldn't I read Shakespeare? I read Stephen Hawking. I don't care, I'll learn from anybody. When you look at that book, what comes out is the flawed nature of human beings wanting to become gods, frustrated, fighting with God, building a tower to reach up the sky, not to learn what God knows, but to fight against God to show how great we are 'cause we built this tower, and we don't need your freaking mountain. We can do it ourselves. We build mausoleums and pyramids and all these things, what is it supposed to do? It's meant really, there's a book by Ernest Becker, it's called The Denial of Death. And Ernest Becker claims that the human being has one major fear, and he spends his whole life attempting to overcome that fear, and that's that he's gonna die. The word homo sapien means man who knows, what does he know? Where are the only creatures that exist, that know we have a death date? Yes, elephants will get together, and they'll look around, and when one dies, they'll all cry, I don't, I'm not gonna say it. They don't know when they're four years old that they're gonna die. My daughter asked me that other day, like, are you gonna die before me? Was I hope so? I was like, in tears. We know at a young age we're gonna die. That's a good thing. But since biblical time, since early man, we have struggled with this desire to overcome that limitation, to become gods ourselves, to extend our lives, both in lifespan, which is great, and in sort of the power, the omnipotence of the human, which means augmentation, building silicon brains that live outside of us. Robotic brain, robotic bodies, cryogenics, suspension, longevity, maybe escape velocity as a curse while calls it. He claims that a certain point in three, four or five years keeps getting pushed back, like disclosure, that will reach longevity escape velocity, which means for every year you live, you'll live another 1.1 years or something like that. Once you hit that, you can live forever. Would you live forever? Not by myself. I wouldn't want to be the only one. And it's so complex, but look at the urge. What's the urge? Who was the only man that you believe did have a life after death? Anyone else but Jesus? Do you think anyone else besides Jesus? We have an urge to be like Jesus, to live forever, to resurrect ourselves, to extend ourselves forever. What if that's you? Yeah, everybody, I can't say everybody, but a lot of people are trying to build a legacy that want to be remembered. They want to. Exactly. They're, they have heirlooms. They want passed-down items. That means books. The Nile of Death. We want something that lives beyond us. In the Holocaust, Victor Frankl. You're making, you're making writing death letters. Making videos for your kids, you know what I mean? So they remember you. Interviewing your parents. That's right. You know, so that the- Writing a beer. Seeing their kids and their kids and everyone down the line knows who they were. Let me keep pressing you. You've got to write your memoir. And the time is right. Look, you can write, Obama has four memoirs. You could do it. He wrote four autobiographies. He can do yours now. Don't put off to the mark. You know what? Alfred Nobel. Incredible human being. Had no kids, no wife. He wrote his will a year before he died. There's a saying in the Talmud. Write your will the day before you die. Why? Because you don't know when you're going to die. God forbid, you should live to 120, I will say to you. But we don't know. We don't know how much capacity we'll have. Some law could change. Something can happen, right? Don't put it off. You were saying, it's not time yet. We're writing a book. Yeah, I just, I'm just not that into myself. It's not about you.
you. Again, Sean, I hand you your great, great grandfather's memoir. I said, I said, I found it. I did some research. I live early. I don't know where found it. And I got, it cost me a lot of money, Sean. You know, I could give it to you, but would you pay for it? How much would you pay for that? Your grandmother. I don't care who it is, Sean. Someday you're, you are that person. First of all, you're that person is a 6,500,000 people, whatever you people know. And it doesn't mean you reveal everything. I don't tell people personally, everything in person. This is my autobiography. It's my first autobiography. Maybe it's my last, I don't know. I want to write more. Maybe I will. I think I have one more book left in me. That's the way I feel. Just honestly, my energy, my age, my commitments, my family, all right. But this is a gift. It's not for you. Don't think about it for you. Like, oh, what am I going to? I don't want to. Okay. So I bet you've done a lot of things you didn't want to do in your life. I think my thoughts are all there. The way I think, what I believe in, what I don't like, what I know. Where in the podcast? Episode 17, man. Where? It's in this. Sean, I love you. And I love your show. And I've gone back. I'm listening to so many episodes. I'm not going to go back to episode 45 to hear what you said to that incredible guy, whatever, the other sniper guy or what? Like, and there's jewels in there. And I'm not saying to write a book about podcast. What's that? It's all in there. It's all there. I'm not asking my kids to. I'm not asking anybody. Yeah. But you also think this is going to be, this is going to be it or there's another chapter in your life. There's more chance. I got told you out there. You know, we were talking about you brought up the Sabbath again. Yeah. And you're like, you got to take a day off. And what do you get to do? Just keep in a big podcast. And I said, this isn't the only fucking thing I've done in my life. A lot of these guys, this is the only thing they've ever done. Right? This is not the thing I've ever done. No, but see all the CIA contractor tactics. Like, I've done a lot of shit, your husband. Yeah. A lot of the guys I make fun of. I love these guys. They've been on all their shows. No wife, no kids, and you know, maybe that's why they're so happy and they're loving that. But to me, the fullness of the life experience, you got to have kids. You got to have a wife. You got to have someone that you commit to and that yourself was for. Yeah. You did that with your country. And that's that is so heroic. But when you sacrifice for one woman, poor for your kids, you know, people ask me, what's the meaning of life? You know, your cosmologist, you study the universe and they always want to know what's what do you think is the meaning of life? I say, for me, it's it's an easy recipe. First of all, you got to find a partner. And I even have a nerd, right? So, I had a mathematical algorithm to find my wife. Okay. Wait a minute. You had a you had a mathematical algorithm to find your, I got to hear this. So what is that even me? It means you take metrics, you know, what you manage, you measure, what you measure, you manage, right? So I kept records, you know, just like dates and people's personalities and things like that. Not like, you know, like, this one, you know, she had a freckle on her, but that wasn't it. Here's the algorithm in simple terms. You should date. And there is mathematical science to back this up, by the way. You should date and, you know, for some period of time, once you're ready and you're like, no one's ever ready, by the way, like, were you ready to get married and like commit to one woman that you're the only woman you're ever going to be with physically, intimately, build a family? No one's ever ready for that. No one's ever ready for kids. No one's ever ready for combat. I'm like, it can't be ready for it, right? These are things that like make us uniquely human. But for me, I said, keep date for some period of time. Keep a list of women. And you may date for women, you know, I'm sorry, I know you've got women that listen, I'm just going to speak for my person. I'm going to talk only about women, but it applies to women looking for men. Date somebody until you find the following person. If I had a daughter with this woman, would I be okay? If my daughter turned out to be like this woman, okay? So let's say I dated, I dated a cheerleader, I dated someone, you know, like just models, I dated and wonderful people, whatever. I dated people that were Jewish, people that were Catholic, people that were Muslim, I dated a whole bunch of people, right? And then some I dated for selfish reasons, right? She's hot, you know, she's she's so fun, like we just did the coolest things together, whatever, like mostly because she was hot, okay? I have a lot of weaknesses, Sean, but but that was one of them. And but I said, I don't know, let's say let's just take it to the extreme, like you're dating some, like the playboy, playmate, I shouldn't say one of my friends with playboy, but you're dating some you know, just super hot smoking hot Instagram model, right? Do you want your daughter to turn out, like that Instagram, do you want her? Maybe she's a wonderful person, but I'm just saying that one, by that one dimension, I didn't want my daughter to be like these people, right? Until I met my wife, and I said, God, if I had a daughter, I would I would get every gun in here and I would protect this daughter if she's anything like my beautiful wife. I would do anything. She's such that she is with a piece of human debris like me, you know, that she is willing to be with me and save my life and and give me life and give me children. I do anything. I found her, I knew it when I found her, but only because I had a statistical sample, you know, for a few decades, you know, I think I married until I was in my, you know, mid late 30s, and that's what I knew. That's the algorithm. Stop dating when you meet the girl whose daughter you would want to be your daughter, not the not the super rich, you know, person, not the super wealthy or smarter than you, no, famous, no, someone that you want your daughter to be like, that's how I stop them. That's the Keating algorithm. It's a good algorithm. It served me well. Good for you. So, and then as far as kids go, you know, nose over, cheerleader didn't work out, huh? That's right. Well, my wife's not going to watch this. But people talk about, look, look, what's the meaning of life? Like, how do you live your life? I'm sure you've been happy at different points. I'm sure you've been low at different points. So, happiness is what's called in physics an unstable equilibrium point, right? Technically, if I have a pencil, here's my, you didn't ask me about my professor, EDC gear, okay? Here's my EDC as a professor. And see the only thing I could get on TSA, right? It's a tactical pen. And I could theoretically balance this on its point, okay? I'm, you know, I had too much coffee, two little gummy bears, but it could balance on its point, right? That's unstable equilibrium. The lightest perturbation, a butterfly flapping its wings will knock this thing over far away, right? So, it's an equilibrium, means it's stable, but it's unstable to fall over. Happiness in life is like that. You can be in a state of happiness and you can be in a state of contentment and flourishing, but it will never last because of a concept called entropy. Entropy is an irrevocable irreversible tendency for the universe to chaotically and ultimately to destroy both information and, and stasis an equilibrium. And here's, here's an example I like to give. Right now, let's say your happiness is X, right? This, you know, incredible. Everything you've done, I don't know about your personal life, but I assume it's, it's fantastic. All right, so it's Sean, I want to double your happiness right now. What would I have to do? If I gave you X, 2X money, 2X podcasts, downloads, 2X Instagram, would you be 2X happy? You'd be happier, maybe, but would you be 2X say again? Would you be? I'm asking you. Probably not. No, you'd be, would you be any happier? I doubt it. If you had twice as much money as you have right now, think about what all you could do differently. You know, I doubt it. I just remember like, um, Monty Burns in, in The Simpsons, he's the, you know, the billionaire, greedy billionaire guy. And Homer Simpson one day, I watched this, I saw this meme the other day. Yeah, maybe not a meme, a cartoon. Yeah. And it was this little kid fishing. And he just had the little cloud, the thought cloud coming out of the set. And what he wanted, you know, what, whatever he wanted, he wanted a fucking new car. And then he's in his new car. And you see the thought cloud coming out of his head. And it's what he wants now. Yeah. Now he wants a plane. Yeah. And then he gets the plane. And there's a thought cloud coming out of his head. And it's what he wants next. And then the next thing is, he's dead. Yeah. You just never stopped wanting. Never. And that's what I've noticed with the money, the more money you make, the more wants, the more you're owned by your fucking possessions. Yeah. It's called the hedonic trend. Yeah. You never get off it. And, uh, I feel like I've learned this very early in my journey. Yeah. You know, I think a lot of people, it takes a lot longer and a lot more money to learn that lesson. But no, I don't think money's going to bring me more happiness. I don't think more subscribers, more viewers, more downloads, more better rankings. Like it's just right. I mean, the fun is the climb up. Yeah. To me. Yeah. No, climb up. Exactly. He was really fucking cool doing it. It still is. I love doing this. I love having this conversation with him. I am also a competitive mother funner. Yeah. And once I hit number one for the first time, going, I'm not going to stay there because Rogan's the fucking king and he always will be.
but I hate it. - It's well-being. - We'll talk about that. - And of course he always will be, I don't think so. I mean, he, he, he, he, I do. But I don't think anybody can take that away from him. Somebody allowed to him eventually. - I think it's Guy Steven Bartlett. - He was the pioneer. - He is the pioneer, he is the goat, but the whole point, at least in my field, if this book is still relevant in 100 years, I'll be a failure. You know why? Because it means science will have stagnated. It means that way. - No, but if somebody builds off that book for the next 100 years, - Absolutely. - Everyone's still fucking set the trend. You're the king of it. - That's true. - And Joe Rogan is the fucking king of podcasting. Everybody else that came after him, no matter what they do, it was built off the Joe Rogan fucking podcast. One way or another long form discussion was built off of him. - But will he always be number one? - Will he always be number one? No, obviously won't be because he's a mortal human being. - And eventually he will get tired of this shit. Somebody else will reinvent, change the game, but it's like Babe Ruth. Everybody still knows who the fuck Babe Ruth is, right? And so anyways, what I was getting at is, no, I don't think any of it, none of that shit is gonna bring more happiness. It will drive your ego through the fucking roof, and we'll probably ruin you as a person. - 100%. I'm not a success in money, but it's not gonna bring more happiness. In fact, Jim Carey has a really good quote. I wish everybody could be rich and famous so they know that's not the answer. - But here's what I wanna go with that back to my pens that get on its tip, it's unstable, right? So what you describe is called the hedonic treadmill. Heed anism is like seeking pleasure, happiness, whatever, wellness, well-being, flourishing. It's a treadmill because it never stops. You just keep running on it. Someone's always gonna have more followers, more money, more women, more guns, more whatever, right? That's gonna get to a point. More guns, I'm not so sure about it, but in any case. But let me ask you this. I said, could I double your happiness? You said absolutely not, what are you crazy? You said, could I increase your happiness? You're the first person I ever asked that particular question to just say, no, you couldn't increase my happiness by even a bit, and I respect that. I'm not, I'm not disputing that whatsoever. - I said with money. - With money, okay, well, fame or shit. Is there anything material, not God, not new? - I'll tell you how you can increase my happiness. It's gonna sound like a fucking punishment. You take all my social media away. You take my phone away. You take my fucking. - I already fucking prescribed that to you on Saturday. - Sunday, Sunday. - And you take my occupation away and force me to be with my fucking family, where we don't have to worry about money, how we're gonna eat, how we're gonna get shelter, how we're gonna fucking drink water. And that will create a happiness. - Will you try it for me? Will you try it for me? I know we don't know each other, but we try one day. - I think how fucking easy it is. - I'm sure you've done very well. You almost won the fucking Nobel Prize, right? So you've got to be financially stable. - Nothing of the clear problem. - And so you have the option right now. You could throw it all away. Knowing that you would probably be a happier fucking person, but you're not gonna do it. - I can't throw it all away, but once a week, I can throw it away. Once a week, I can see you, not on the phone. I can see you not on Instagram. I can see you not doing podcasts. I can see you going to church. I can see you doing with your family, your friends, your community. Heck, you can drive. You know, I'm not allowed to drive on Saturdays. I'm not allowed to use the phone. I'm not saying don't use your phone to call somebody. I'm just saying, put disconnect from the world. The reason is, and it's very beautiful. And I think it applies to you. The commandment in Hebrew and the fourth commandment, which is that you should honor the Sabbath, right? It doesn't just say you should take off on Sunday or Saturday and kind of chill out, watch the football game. No, no, no, it says, it says, six days, you must work in order that seven day is a Sabbath, a rest day for God, Hashem, meaning that the purpose of the week is, you must earn your freaking money. That's what the Bob is very explicit. If you don't work, you don't eat. You can't rely on a miracle or even other people. It's considered, you know, this isn't good to rely on other people that they're just going to provide for you. No, you have to do it. But if you work seven days a week, I know billionaires. I know superstars, you know, millions of Instagram, whatever. They work 24/7. I said to them, I told Stephen Bartling on his podcast, I said, you're so successful. You work seven days a week. Aren't you just a slave? Like you may be, it may be to a good, good, you know, outcome, you're doing great. If I could buy a stock option on anybody, he's a 32 handsome fit, great guy, great friends. He has 100 people. His podcast is like, you know, it's almost as big as this, okay? And it's all he does. And I like Stephen, take it from me, I'm an older man. You gotta find a woman, you gotta find a life, you gotta make a family, and you gotta take time off. If you cannot do that, you are a slave, you're a rich slave. I'm a slave, Sean. I'd love to be on, on doing science every day of the week. I could do podcasts every day of the week. It's a challenge for me to turn it off. I don't like doing it. How do you turn it off? How do I turn it off? When you celebrate the Sabbath. Yeah. Are you telling me that none of your science is at your head? That's not the issues. Science is in your head 'cause science is a vehicle to God. Your work. I'm not, I don't work on papers, I don't. I told you it. But it's in your head. That's not, are you really able to switch it all the way off? God is not like Kim John, you know, he's not, he's not policing your thoughts, right? So he, he doesn't care if you're doing that. He cares if you're on a podcast with someone you respect the hell out of and you did that and you're not, you're not in a temple or you're not with your kids and you're not with your wife and you're kind of, but he doesn't need it for him. God doesn't do this for, he's doing it for you. You know, every six years in the, in the Old Testament, you're supposed to let the land lay follow and not reap every year. How did they eat? So you can go back and dispute and talk about the science. Whatever. You had to let the land, every seven years. And people would go free, the slaves would go free. If you had a slave and let them go free. Every 49 years, you know, the word Jubilee, that comes from Hebrew, the Yovel Jubilee. It's a Jubilee every 50 years. Everybody would get their land back. Every slave would go free throughout the land. It's on the Liberty Bell. It's on the frickin' U.S. Liberty Bell. It says you should declare freedom throughout the land and liberty to all its inhabitants. We get that from the Torah, from the Old Testament. And it says freedom is not just that you do whatever you want. It's that you're doing something actively in pursuit of something bigger than yourself. And by the way, I think you do this, but you just don't know it. So the only thing I'm saying is it's like an easy prescription from this non-medical doctor, okay? But it's the decoupling from the world. And I don't care if somebody's tweeting about me 'cause I said something about Avi Loeb. And I don't give a flying F. I could care less. I'm not checking it. I'm not seeing, oh, I got this banger tweet. I gotta get it out there. I gotta, I don't care. It can wait. You know why? It's come back to the happiness thing. I told you, and you had this eloquent way I'm saying it. Like, sorry, Brian, like Elon Musk comes in here and drops a billion dollars on me. Maybe, come on, you'd be a little happy. But you wouldn't be twice as happy. You wouldn't be 10 times as happy. But Sean, I'd be happy in the moment. In the moment. Okay, but that's not happiness. But then it goes away. That goes away. But here's the sick thing about life. I can't make you happier, guaranteeing. Well, I can make you unhappy, guaranteed, right? This is entropy. Entropy is the concept of disorder, of chaos, of randomness. The things that make us happy, organization, structure, family, production, work, it's organized as structure. The natural order of the universe is towards disorder and chaos. We must control it by applying energy to reduce entropy. I mean, happiness is a choice. Say more. Say more. Someone who's unhappy to press, they can't just choose it. Sometimes they need medication or situate job change or something like that, right? It partially could be a choice. But unhappiness. You have to choose when you wake up. If you're going to be pissed off. Or if you're going to be happy, right? Yeah. If you're healthy. Yeah. But anyone who has kids, this is getting back to my meaning of life and how I find me. Anyone who has kids, I don't even say it. Well, I'm not going to say it. I can't make you a little bit happier, but I can make somebody infinitely unhappy. I'm not saying I'm going to do it. I'm saying they could become infinite. I know billionaires, sure, I don't have lost kids, okay? You think they wouldn't trade all their billions? Billions of billions more? Be poverty. Popper is living in the gutter to have their kids, but their son's back, okay? So you can make someone infinitely unhappy, but you can only make them finitely happy. That's entropy. What does that tell you? Do the things in life that if they got taken away, would devastate you? It sounds depressing as, you know what? But that's what I think about. I want to construct order. I want to reduce entropy. I want to create things, build things. Not from my ego, not from my bank account. But for the goodness, for the benefit it brings to the world in the future. I think that's what the meaning of life is. I mean, I'm a scientist. Maybe that doesn't apply to everybody. Sure, a lot of people will be happy with seven Instagram models and a billion bucks. But maybe not. And again, you look at the Torah, you look at the Bible, anyone who had multiple wives, they were some of the most unhappy people that you'll ever know about. So guys out there, be careful what you wish for. You got a hot question for you, ready? Go for it. Here we go. Coming in, huh?
Back in 1950, Enrico Fermi, a noble prize-winning physicist, and one of the fathers of the atomic age who was having lunch with colleagues at Los Alamos, when he asked a question that still unsettles science today. Where is everybody? The universe is enormous. It's ancient. And based on the sheer number of stars and planets, it seems like life should exist somewhere else. Yet so far, we have no confirmed signal, no confirmed contact, and no undeniable evidence that another intelligent civilization is out there. Can you break down what Fermi paradox is? Yeah. One of the people he said that to was an old friend of mine who's deceased now named Herbioarch. He's one of the founders of UC San Diego. I miss him a lot. He was a great person. Built the atomic bomb and then spent many years as many warriors do advocating for peace afterwards. No one knows more about wanting peace and the goodness of peace, I guess, than you who fight the wars, right? So he helped develop the atomic bomb and he was at that lunch with Enrico Fermi when he posed this question while, you know, kind of a side quest is there building the atomic bomb, right? So the concept is that the universe is vast, but let's just restrict ourselves to the galaxy. Our galaxy is a few hundred, maybe a hundred thousand light years across, meaning light takes a hundred thousand years to get from one edge of the galaxy to the other edge. There's about a hundred billion stars in our galaxy. There's about a hundred billion galaxies in the observable universe. That's a hundred billion squared stars in the observable universe. Each one with ten planets call it around it. You get numbers that are incomprehensible. A million, million, million, million planets in the observable universe, 10 to the 24th planets, right? So it just becomes crazy. And then you think, well, if only one percent of them have life on it, that's 10 to the 22nd power, you know, it's an insane number. So the universe is huge. There's a lot of opportunities for life for planets. And yet, as you say, we have no evidence that rises above scientific truth or evidentiary standards. And this is going back 84 years when he said this in Los Alamos, right? So this kind of shows you that back then they didn't think they had evidence. It was right before Roswell, by the way. And then nowadays we don't we don't feel like consequential evidence exists at the level of scientific proof, right? And even those with the most invested in it, like Avilo will not say, as he didn't tell you, he didn't say, we have definitive proof, right? He said, he's a careful scientist, right? He said, we don't have evidence yet. That's fine. Does that mean they don't exist? Absolutely not. It could exist. And there's many different reasons I could explain why we don't see what we don't see. Some of them come down to reasons, for example, that have to do with there's an equation called the Drake equation. Radio astronomer in the 60s said, let's calculate how many different life forms there could be in the universe. And what it would take for us to know that they're there. Okay? So how many people are there? And it's how many civilizations are there that we could communicate with? In other words, if there's slime mold, if there's like bacteria, you know, on a planet, that's, you know, one four light years away, right? 10, 10, four light, whatever you want, right? We would never know they exist because they don't have technology to broadcast radio waves and light waves for us to see. Or a neutrino tractor beams or gravitational waves, they don't have technology, right? So it's this, how do we know how many technologically advanced civilizations there are in order for us to be able to detect them? Otherwise, we can't detect them, right? We're not going to the other star systems. The fastest thing that humans have ever made, Voyager, it's traveled the farthest away from Earth. It's one light day from the Earth. It was launched 55 years ago before I was born. And in that sense, it's in, you know, that thing is the farthest we've ever gone. It's only one light day, the nearest star is four light years away. So it's thousands of times closer. And so effectively, we will not be able to find aliens unless they send us information or come and visit us. So if you say that they haven't, if Fermi saying they haven't, we don't have evidence, that has to be some explanation for them. Otherwise, you could say one possibility is they don't exist. Now, they might not exist now, but it doesn't mean that they didn't exist in the past. Right now, there's information from the 1936 Olympics that's getting out. It's about 90 light years away from us. That was the first time humans ever transmitted a globally televised signal, a radio wave that could travel around the world and go into outer space by accident, leak into outer space, right? That is now traveling at the speed of light, 90 light years away from us. There's approximately, you know, maybe a thousand stars that live within a 90 light year radius of the planet Earth, right? Each one of them might have tens of planets or something in room them. That amount of information for them to know about us, that's just for them to know about us. That's not to send a return signal. That would be quite 200 years from now, right? So the quickest we could ever send something is it goes out at the speed of light reaches a destination and comes back to us. That light signal left a hundred years ago. It's gotten almost a hundred light years away for us to hear back from them. We heard you, you exist. That'll take another 100 years. So that makes sense. So there's a sphere. It's a radius hundred light years, 1000 stars plus or minus in them, and there's maybe 10,000 planets in those. So right now all we can say is we don't we don't know there could be stars that are half that distance 50 light years away. Maybe there's 300 of those and there's 3000 planets on them. So we always can say is that volume of space knows about us and could have returned a signal to us since we started broadcasting information. We don't have any evidence of that. Not for people not looking, but that is such a tiny microscopic number. That's like it's like a shot glass out of the Pacific Ocean in terms of how much the vastness of the universe is. So one thing is that space is very big and the speed of light is very slow, even that's the fastest speed you could possibly travel at. Another solution that people have come up with is that there's lots of life in the universe, but they tend to not live very long because they have these things called wars and they do battle among themselves. And you see this at every level of speciation from bacteria to Beethoven. I mean, to us, right? I mean, I don't tell you bacteria have military campaigns against enemy bacteria cultures. They secrete toxins that preclude other bacteria. They spend their biological resources to create bacteriological trenches warfare to prevent other bacteria from encroaching on their precious, you know, goo that they're eating. Every level of, and that's the most primitive life that we know about all the way up to the most advanced life we know about namely us. So maybe they only live so long. Maybe there's a paper I read about recently. My friends had to be in a Hassan Felder made a video about it. Elon Musk is tweeting about it. And it is, I think Avi Lobos involved in somewhere or other. It shows that it might be an average lifetime of a civilization in order for us not to have seen anybody of about 5,000 years. Wow. Which is like barely back to the pyramids, right? So some say you hit this filter and then you get filtered out. The question is, are we past the filter? We're not yet there. So there's a lot of explanations. Another one that I like is I take my kids to the San Diego Zoo. And when I take them there, there's a gorilla exhibit. And I love the gorillas. But it says on the, on the side, it says don't knock in the glass. It really bothers them. You know, it just makes them anxious. So don't do that. Of course, my kids do that. And then they get kicked out. But, but what if, you know, you went instead of the San Diego Zoo, we go to the wild animal park, then you're really far away from the gorillas. You're not going to knock in the glass. You don't even need glass. You're really far away. You observe them in a distance. Maybe there are things lurking, observing us at a distance. But interstellar species that has the ability to come here or to sense our activity in our presence has advanced technology. What is it that we're going to learn from? I mean, have we learned that much besides about the species of gorillas and bacteria we learn about those. But like, I always say, you know, ornithologist study birds, right? But an ornithologist needs a bird a lot more than the birds need the ornithologists, right? Birds don't care if you study them or not, right? So they might not be interested in us. We might be able to do anything for them. We might not provide any resources. They're going to eat us. And that's why I'm skeptical of these things. I don't know if you heard of a cattle mutilation and, and like, abductions and things like that near death experiences. There's only one near death experience that I believe in. By the way, the 100% documented fact, which has to do with Alfred Nobel. Do you know the story? You know Alfred Nobel was. He invented dynamite. So he was one of the richest people in the world, kind of like Elon Musk or Tesla of the 1800s. And he was one of the richest people in all of Europe and all of the world. And his family was involved with making sea mines for the Russian and Crimean Battle War of 1840, something like that. And so they were arms dealers. Alfred Nobel and his father Emanuel. And they were trying to invent ways to make their methodology more lethal. And one of Alfred's brothers, his baby brother, Emil, started to play around with nitroglycerin. And nitroglycerin is incredibly unstable. And one day he was in the family laboratory and he dropped it on the floor and blew up like enormous explosion. They barized him and six other people, five other people, six people killed instantly.
And this devastated his father, Emmanuel Nobel, and Alfred as well, and Emmanuel ended up basically getting committed to the Sanatorium, and then he died eight years to the day of his son. His heart was broken, he had a stroke, and just devastated him. And Alfred sent out to do something to make that never happen again. And he took nitroglycerin, and he mixed it with a type of, basically like clay, it's called diatomaceous earth, and he mixed it together like chalk or clay with nitroglycerin and it made it stable so that you could drop it. And that became known as dynamite. Dynamite in Greek means powerful rock. And he became one of the richest people in the world, based on that invention. But it was also used for munitions, and they sold in their arms factory. And reportedly he had indirectly been responsible for the deaths of more people than any person in human history. How much so, that at 1888 he's walking around Paris, and he sees a headline in the Parisian newspaper, and it says Alfred Nobel, the merchant of death is dead. The man who committed no benefit to humanity and killed more people than any other person in human history is dead. Now he's reading this, so he knows it's not him, turns out it was his older brother Ludwig who died. And so he was kind of sad about that, but it was really a wake up call for him. He had no wife, he had no kids. And he decided at that point, if he died then, that's the way the world was going to remember him, like George Bailey in a wonderful life, right? He sees the ghost of Christmas present got to Christmas past and scrooge the same exact story in a Christmas girl. He got a glimpse of what his own death would be like, and he said, I'm going to change my life from now on. I don't know how much longer I have to live. He took this huge fortune and he gave 99% of it to the Nobel Prize, and he established it. And its goal was to do what this newspaper said he didn't do, which is to make the greatest benefit to mankind. So he created a prize for peace, for chemistry, for medicine, for literature, and for physics, how can I forget physics? And these things have had tremendous benefit. The first Nobel Prize ever given was in physics was for the X-ray. The X-ray machine, which is probably pulled bullets out of people that you know, like it's had so much benefit for diagnostic purposes. I had it too thick, the X-ray is benefited humankind, and it's a physics invention. It's a technology invention. And then the Nobel Peace Prize, which has a very checkered pass, one of my friends, Tony Tertini wrote a book about how, you know, it's gone to like Yasser Arafat and Terrorist and all sorts of sort of characters, Obama won it after being in office for like nine days. So it's been politicized. But it still has this Nobel LE goal of benefiting all of mankind through science, through peace. And I think it's a wonderful thing. And it wouldn't have happened without this near death experience that Alfred Nobel encountered. That's the only near death experience, I believe, I don't know, you might have other stories. Well, Brian, we're wrapping up the interview here. Last question, who would you recommend for the show? For this show? Oh, that's easy. I don't know. If the internet can handle it though, Eric Weinstein. Eric Weinstein. Eric Weinstein is one of the foremost kind of intellect, public intellectuals. He's created concepts and he's incredibly, he's incredibly quotable, he's incredibly courageous. He's incredibly, he gets a lot of hate because people, he's so outspoken. And I have the distinction of being the only person that ever interviews him that pushes back on him. And sometimes we get fight like brothers and we have a lot of respect for each other. And I think you could, you could handle them, I think that combination, his encyclopedic knowledge of everything from aliens, theoretical physics, artificial intelligence, economics, and then his very, very interesting perspective on the Epstein. He met Epstein, Epstein knew about Eric's research, maybe partially some weird Harvard connection where Epstein had an office and a work space and he wasn't a professor, he wasn't a PhD. And Eric understands a lot more about Epstein, and I think most people do because he saw from the financial component, the physics component, the Harvard, the institutional, all these different perspectives. And he's just, he's so quotable, imaginative and he's such a good spirit, we call it mench, he's a manch that you and him together I think would break, break the internet wide open. Well, I'll text him, I've never met him. I will. You have his numeral. I do have his numeral. Get in touch with him. I think you are. All right. He's the one. No question. Well, thank you, Brian. No matter where you're watching the Sean Ryan show from, if you get anything out of this at all, anything, please like, comment and subscribe. And most importantly, share this everywhere you possibly can and if you're feeling extra generous, head to Apple Podcasts and Spotify and leave us a review.
Podcast Summary
Key Points:
Shannon Maldonado kertoo Shopify-alustan helppokäyttöisyydestä ja sen työkaluista yrityksen hallintaan.
Brian Keating keskustelee fysiikasta, Etelämantereesta, teleskoopeista ja tieteellisestä tutkimuksesta.
Keskustellaan UFOista ja salailusta; Keating suhtautuu skeptisesti väitteisiin ja korostaa tieteellistä menetelmää.
Keating jakaa henkilökohtaisen tarinansa isän hylkäämisestä ja pyrkimyksestään Nobel-palkintoon.
Hän kannustaa teleskoopin hankintaan ja tarjoaa meteoriitteja sotilashenkilöstölle.
Summary:
Keskustelussa käsitellään monia aiheita. Aluksi Shannon Maldonado kertoo Shopify-alustan käytöstä yrityksessään, joka myy käsintehtyjä teetä. Hän korostaa alustan helppokäyttöisyyttä ja sen tarjoamia työkaluja, kuten varastonhallintaa, jotka mahdollistavat liiketoiminnan ilman teknistä osaamista.
Tämän jälkeen Brian Keating, fyysikko ja professori, jakaa kokemuksiaan Etelämantereesta, jossa hän on rakentanut teleskooppeja tutkiakseen maailmankaikkeuden alkua. Hän keskustelee UFOista ja hallituksen salailusta, mutta suhtautuu skeptisesti väitteisiin ja korostaa tieteellisen menetelmän tärkeyttä. Keating kertoo myös henkilökohtaisen tarinansa isästään, joka hylkäsi hänet lapsena, ja siitä, miten tämä vaikutti hänen pyrkimykseensä voittaa Nobel-palkinto.
Hän kannustaa vanhempia hankkimaan lapsilleen teleskoopin, koska se voi herättää uteliaisuuden ja tieteellisen ajattelun. Lisäksi hän tarjoaa meteoriitteja sotilashenkilöstölle ja korostaa tieteen ja teknologian merkitystä sekä historiassa että nykypäivänä.
FAQs
Shannon Maldonado perusti käsintehtyjä artesaaniteeitä myyvän lahjakaupan. Hän valitsi Shopify-alustan sen helppokäyttöisyyden vuoksi.
Shannon valitsi Shopifyn, koska se oli hänen mielestään yksi helpoimmista alustoista. Se tarjoaa kaikki tarvittavat työkalut, kuten varaston suunnittelun, kätevästi dashboardissa.
Shannon vertaa Shopifya itse polkupyörään, koska se hoitaa asiat ja liiketoiminta sujuu vaivatta. Se on hänen mielestään paras vertauskuva.
Shannon sanoo, että parasta Shopify on, että he voivat harjoittaa liiketoimintaa ilman teknistä osaamista. He voivat hallinnoida taustajärjestelmiä ja frontendia sekä myydä verkossa vaivatta.
Shannon piti tärkeänä pohtia yrityksen kehittymistä tulevaisuudessa. Hän mainitsee, että kaikki myyntiin tarvittavat työkalut ovat kätevästi dashboardissa.
Shannon suosittelee aloittamaan ilmaisen kokeilun Shopify piste komsi vustolla. Tämä on hänen mielestään hyvä tapa tutustua alustaan.
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