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The transcription is a conversation between two people discussing various topics. They mention technical difficulties and their podcast being the number one in the world. They talk about their astrological signs and the importance of effort. They also mention a breakthrough in fusion energy where scientists have found a way to create a finite ingredient needed for fuel. They describe the process involving magnets and heating up the fuel to create energy. They discuss the efficiency and power of this new method. The conversation also touches on personal hygiene and the importance of washing hands. Overall, the transcription is a mix of casual banter and discussion of scientific advancements. We're live. We're back in business here. Little bit of a technical difficulty, mostly because I'm not very computer savvy, but that's okay. We'll figure it out. Thirty minutes. Do better. Do better. Yeah, I mean, that was my hope, that we maybe could have figured these bugs out a little earlier. But hey, at least we're not like, you know, not to be dogging on the older generation, but it didn't take too long. You know, we figured it out. Yeah. That's right. 8.30, figure out the bugs, be started by nine. Seems like a good idea. Yeah. And I said, nope. Not. Well, I guess we ought to give the people the intro. The people need to know that this is now the number one podcast in the world and will remain in the top spot for quite some time. No, for eternity. You know, all the greatest things in the world have ever started. You know, you're only going to get views from your mom and your dad. That's about it, you know. And in our world, we're number one. We're the number one podcast in our world. And that's all that matters. That's right. That's right. Hey, we're just a bunch of nobodies from the Midwest. And we just want people to know our names. My name's... Not to be confused with Morning Head, but, you know. This isn't a sex podcast whatsoever. Yeah. Yeah. No fellatio. God. Get your shit together. Anyways. Oh, I'm Austin. I'm Austin. Austin. Yeah. What up? What up? What up? Probably. Probably. We should probably start with that. Thank you. Thank you. You're off by a day. It's the fifth. But that's okay. That's all right. I still love you though. I still love you. It was close enough. You know, I was probably born at like 1201. So, you know, we could still call it the fourth. Astrological or whatever. The astrology. I'm a Capricorn. Capricorn. Yep. I'm a hard-headed intellectual. And it doesn't do well with... Actually, I don't really know. Well. And the other thing is, it's all about effort. And I think we have put in the effort to try to make that something. So, some people do, some people don't. And so, that's... No, not usually. It takes work. You know? And it's been good so far. And now we're doing a podcast. So, 21 years later. Well, no. You know, third grade. So, we were probably eight or nine years old. So, now... Yeah, we were 20 years, basically, is the number I would put on it. The very short blink that we exist. Yes. So, what kind of... You said you were drinking a Colombian roast? Is that what you were? Oh. Not yet. Not yet. Keurig, if you want to email one of us, we can do that. My email is 379-AJ-hanshu-0570 at gmail. It's really long. But... Yeah. We need sponsors. We need sponsors. We need money. We're broke. Yeah, the first thing they're going to say is, that really sounds kind of sexual. So, no, we can't. Yeah. Our viewers are our supporters, you know. So, you're not assholes. We love you guys. So... Oh, yeah, yeah. That's true. More you than me, but we can talk about that later. That's right. Problem child. Right now, I'm writing a note for Keurig. Keurig, this is my email. If you need to show... This is it. Is it reflective? Does it feed back properly? No. No. Yes. Help us. Help us. Well, we need to do that. We have no social media yet. This is the first video. So, this is a business, you know. You got to look at it as a business. The start. Our day one. And... Yeah, we're just shooting the shit right now, right? Got, you know. Maybe you're... Loading a bowl. Smoking the gange. You know. In your little chill zone. Whatever you got to do. Yeah, probably not. Let's... No. No. Probably not. Yeah, we say no to drugs. Hard drugs. Man-made drugs. So... Well... You probably should if you need to take it. If your doctor says you need to take something, you should probably take it. Yeah, that's... I hate being sick. Yeah. Had the bronchitis. The bronchitis. Yeah. Yeah, we're not sharing enough germs. You got to share the germs. Yeah, you... You nasty ass. You go to the bathroom and you wipe your ass with a piece of paper and you don't wash your hands. I hate that when I go into the restrooms. Yeah, they just... Yeah. Touch... Every time I go to wash my hands, I take the towels that I've dried my hands with to open the door. Yeah. I don't touch... Because I don't trust those guys. You know. You're nasty. I don't trust those guys. You know. You're nasty. Wow. Wow. Yeah, definitely not taking the scientific approach to that at all. Science says if you touch it, it's got germs. Yeah, commonsensical. Yeah. Yeah. That's right. Yeah. Well, it sounds like these people that have been working on this fusion energy, though, haven't been sick lately, so... At least not sick enough to not figure it out. They've made some breakthroughs as of recently. Oh, yeah. Let's segue into it, shall we? Let's do it. What was the name of the project first? What did they call it? I want to say it started with an H, but what they've done is they've made a huge breakthrough, I guess, where, you know, they take, from what my understanding is, is there's two naturally occurring elements in the environment that they use to basically fuel this contraption. And so one of the components or one of the ingredients is fairly common, and I guess it's found in water, and it's like a naturally occurring thing that they have in abundance. Correct. Yep. And then the other one is very finite. There's a very small amount in existence. Yes, one of them is not very easily found, so... It is very... Yes, there is a correlation there for sure. And what... Correct. So what I've found or what I've researched or read and watched is that the one ingredient that is fairly uncommon or that they weren't able to find, they were able to change something in the environment. And what I've watched is that the one ingredient that is fairly uncommon or that they weren't able to find, they were able to change something that was used enough that through, like, the breakdown process of these atoms, they basically could create that derivative that they need to fuel it. So they're basically creating the finite ingredient. So they're able to offset, because I guess there's like, in the world, it's a very small amount. And so of the deuterium, and I may be completely wrong on it, but the name, but yeah, they've changed it in a way that they can create the other part of their two-part fuel system to make the energy. And they're heating this thing up and it's like 100 million degrees. And the sun, the sun is only 27 million degrees. So, and I was watching this video and it's this huge, it almost looks like a pressure container. You remember the iron lung when, you know, it looks almost like that where people are laying in it, you know, and their heads are sticking out, but was the only way... But anyways, it's this big metal thing and there's magnets, these huge, powerful magnets that they can control via computer. And it, and it squeezes this, this fuel, like pocket, right? So it like squeezes everything together. The more power it gets, the atoms are shooting around and like making a bunch of heat. And then it's heating up. And then this funnel that looks like, you know, when you played games when you were younger, like Clue and you had the little timer. And it was a sand tube and it was an hourglass, but it's horizontal. And it shoots those two pockets of energy at each other. And then in the middle is even more powerful magnets and it's squeezing and squeezing all of it together. And the more tight, it's basically, it's small. Yeah, it's small, but it's interesting because it also puts off light. So when they're doing it, they can actually see through these little kind of like holes that are covered with, I would assume some sort of bulletproof slash, I don't know, something to contain all of the energy. But you can actually see this thing firing up and it shoots off this purple, like pink glow. So it's pretty cool to watch and see. Yeah. Yeah. You always spent more than you made. Or a business plan. Yeah. Gotcha. Yeah. And it's much more efficient and powerful. Yeah. Yeah. Yep. Hmm. Well, that's a... Well, yeah, but this is the thing, right, is that they've found a way to basically... So the deuterium is a finite resource, right? There's only so much of it in the universe. And it's, and I, forgive me, audience in Dakota, but it's a fuel. It's what's, what's the word? Propelling. It's a propellant. It's shooting. It's a, it's like, you know, when you put in a rocket fuel tank, hydrogen, and you ignite it and it takes off to space. They're usually using that same idea to propel these particles. So, but the huge breakthrough with it, from what I gathered, was that that fuel, the deuterium, they were able to find a subsequent or something that's similar to that. In properties, but they can create it infinitely through the process of breaking down an element or an atom. They're able to pull off these particles or atoms or collect the fuel to continue it on. So deuterium is no, is the old school way. That is what they were using before. So that's why this big, it's a big breakthrough is that they're literally, they, that's the breakthrough. They found the fuel that is not rare and they can continue to do it at the same level as the deuterium. And so, you know, they're, they're, they're splitting uranium to produce energy. And uranium obviously is comprised of. All right. Correct. Correct. Exactly. Yeah, there was a really good video on YouTube that I watched. And this guy is, it was about a 30 minute video. And he walked through the whole process and he, you know, he's just the host, but he got one of the scientists on there and he was kind of discussing all of it. And he knows what he's doing. I am by no means an expert in this. Yeah, we're, yeah, basically. Yeah, we're, we're just feeding off of everybody else's work to try to make our own buck. But isn't that what the world is in general? But it's. Correct. Correct. Yeah. A hundred million degrees, which is like, what is that? Four times the heat of the sun. And it makes you wonder, if you're able to create something that hot, what's the argument to say that we can't create our own sun at this point? If we can create the heat and the environment to do this, who's to say that, you know, down the line, we can't shoot up one of these huge contraptions and our sun is dying and basically create our own sun again to keep going. Yeah. Yeah. Yeah. Yeah, instead of. Oh, wow. Sorry, I was just kind of glancing over this article. The greater fusion output from the facility will produce more data that allows us to maintain the confidence in our nuclear deterrent without the need for further ungrounding testing. Dr. Herman said the output is 30,000 trillion watts of power. That's the output. 30,000 trillion watts of power. Is it? See, I don't know, mega joules. It's morning brain. You got the morning brain. It is. Hey, for me, though, I got to break it down that way. It's like, all right, mega joule. I don't know. How do I even put that into correlation with like a light bulb? You know, like a light bulb is. How many watts is a light bulb? Six, you know. Well, it depends if it's incandescent or if it's an LED or whatever. But I mean, you're talking in watts of power. It's maybe 30, 40, sometimes 90 watts is a light bulb. And we're talking 30 trillion watts. Okay. Correct. You were on the right track. Yeah. Yeah. Gotcha. Mm-hmm. So, see, I've got to ask Siri and figure out how many light bulbs that is. So, hey, Siri, what is 30,000 trillion divided by 90? Three times 10 to the 16th power divided by 90 is approximately 3.3333 times 10 to the 14th power. Dude. Okay. So, that's interesting. So, that would be, there's a million. There's 333 billion lights. Well, no, there's an extra comma in there. Because million is two commas. Billion is three commas. Trillion is... Wow. One, two, three, four, five. One, two, three, four. Okay. Gotcha. So, that's billion. 333 billion is my estimate. I wasn't great at math, but... Anyways, that's a shit ton of light bulbs. That's about all you really need to know. It makes me curious, though, how much, like, an average oil or coal or, you know, even, like, the biggest solar array... Almost half of them? Okay. Well, yeah, because... If there's 7 billion or 8 billion people on the planet, you would think that each person would have... You would think. I mean, unless we're talking about people in the middle of the desert somewhere that has no light, you know? Like, we're talking third world. Hey, they've got at least one light bulb. I mean, there's... In my house alone, there's probably 30. Okay. Yeah, like, you know... The dirt. The people from the dirt. Because we all come from the dirt, you know? Straight from the mud. Yeah, like in the Amazon or on an island. Yeah. They've got their loincloths and their staff. Yeah. Yeah. Yeah. Pardon me. I've got to brew another cup of coffee here, so... Okay. Okay. There is 2460 kilowatts of electricity generated per ton of coal. A standard 500 megawatt coal power plant produces 3.5 billion kilowatts per year, which is enough energy to power 4 million light bulbs all year. To power most of a household's electrical appliances for a year, it would take about around 4,750 pounds of coal for one house. Correct. I'm sorry. 4,750 pounds of coal to power... Well, yeah, I mean, that's... What is a ton? I think it's 1,500 pounds. Oh, is it 2,000? So we're talking, you know, two tons of coal. Yeah. Yeah. Yeah. Yep. Yep. A standard 500... Yeah, megawatt... coal power plant. So this is claiming that the average is a 500 megawatt. So 500 megawatts to a fusion energy, which is... What... That now intrigues me. What is the output of fusion reactors? Yeah. Yeah. Or how much... How much... How much... Yeah. How much energy... output... Yeah. Oh, absolutely. I'm just... I'm trying to figure out... At present, fusion devices produce more than 10 megawatts of fusion power. The ITER will be capable of producing 500 megawatts of fusion power. Correct. Sure. Well, I'm not... I'm not even curious about nuclear reactors. I was more... Yeah. Yeah. Yeah. Yeah. Yeah. Yeah. Yeah. Mm-hmm. Mm-hmm. Well, I mean, even if it's... Even if it's apples to apples, and a one fusion reactor could produce the same amount as a coal reactor, I mean, just, you know, think about how much cleaner and how much, you know... How many less resources you would need to create the same amount of energy. Yeah. Correct. Yeah. CEO, yeah. Mm-hmm. Yeah. Here's... It would clean up itself, but then it makes me wonder this, right? So now we've become so advanced, or we have, you know, we have achieved advancement in humanity that we have created a man or a group of people smart enough to think, recreate this. How long does it take for the deterioration of human intelligence before we can't even sustain it? Because we don't have enough smart people to maintain that, you know? Or does it get to the point that a computer takes over and a computer basically does all of it? Cataclysm. Cataclysm. Yeah. So then as a civilization, that should ignite us to try to create something that is so, like, well-filled and protected that you could keep all of the secrets of our humanity inside some sort of vault that even if the freaking world was hit by another planet, this box would still be able to survive. And, well, and hopefully there's organisms still that could use that information. But it just makes me wonder, how do you, you know, because when you watch these other podcasts and these people that are super smart and they've got all these ideas and the theories about ancient civilizations of, like, the Great Pyramids and these people that used to exist that no longer do and they think that it's some sort of, you know, some astrological or a comet or some meteor strike that basically wiped us out and then we were no longer able to recreate the same things that they were back then. So, it's like, how do you protect future generations and how do you maintain and keep safe these secrets? And... Yeah. Yeah. Yeah, I've seen that. Did you say weed or wheat? Oh, I thought you said weed. I was like, damn. You could have just said... Ha, ha, ha, ha. Screw the wheat, man. We just need to grow the pot. I don't need food. Just get me high. I'm good. Save the... Save the marijuana. I don't need... I don't need corn. Yeah. Yeah. Yeah. Ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha Who gets punished, who gets punished when that does come to reality, where somebody comes, or some extraterrestrial life form finds us and wipes us out? Well, no, I'm talking about the single person that decided that was a good idea. Ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha, ha a rock. They're just like just send the rock. Yeah. And how long is it going to take for them to even get here once they get the coordinates like their technologies? Yeah. I mean, I would assume they had the same problems as us that generations of people die because of this, sheer amount of time that it would take to get to a certain place like. Yeah, your time like you, you ate it. Yeah. Right. Yeah. I think it's, yeah, I think it's a Yeah, I thought it may have crumbled. Yeah, exactly. Hey, who's? Yeah, I did. Who's to say that they're even more advanced than we are? Maybe we're more advanced than they are. Who I mean, Yeah, and who's to say that today that their planet didn't just get destroyed by space rock flying it? Yeah. Yeah, I. Yeah, we can't even fathom this. What was his name? Oh, Carl Sagan. Not being alone. Yeah. Yeah. And then how long does it take for this fusion power to get to such a level that we can actually start using it to propel objects into space or? And I mean, it's the only thing that makes sense. Well, yeah, are you gonna like, are you gonna take train cars full of coal to power your rocket in space? Or hydrogen? Or, you know? Yep. You know, and it reminds me of the movie. What was it? Was it WALL-E? Remember WALL-E? Well, he was, what I get, he was on Earth. And they, yeah, he was a little robot and he found Eva. Eva was the love of his life because she was so, so clean and smart and looked really nice. But he's on this huge spaceship of these large people and that they don't walk. And yeah, it's like, that's, I mean, we can't even, we have such a short lifespan that how you would need computers, really. And the ability to like, put people to sleep and then could be reawakened at different points in time. And like, I just, but like, why even, why even think about that? Like, why even try to, why are we not trying to like, make the experience here better? Like, I don't know. Why? We don't need to go anywhere and do all this stuff. Why can't, let's figure, let's figure it out here. Get our stuff together, get our shit together. And then we can start thinking about this stuff. Deuterium for fusion power. Yeah. And mine it. But I mean, it's infinite resources. But what if we stumble upon something that we have no idea like, the consequences of even bringing it into contact with us? Like, I mean, what if it's so radioactive? I would, I would agree with that. I get it. But just, just like an engine, a traditional, you know, gas powered or diesel powered engine, like it only works when all of the parts are working in tandem and, and doing their jobs. And it can, it can produce, you know, the enough energy to move itself forward. It's like, you know, if I feel like the biggest breakthrough that we could have is if we could get everybody on the planet, which seems like a tall task, task to get on the same page and work together. And then we could do these explorations, much more efficient and easier and probably get further and, and find things easier. And I don't know, I just, I feel like we all got to work. We've got to work better together, nations and countries and just people in general. Well, no, but you're saying that they, I get what you're saying. You're not saying that communism is good, but that somebody was man enough or adult enough to say, look, I get what you're trying to accomplish, and we're willing to do that for whatever. Yeah. And in our country, it's not that we need to become communist, but I mean, just like you take supplements for your body, you know, you kind of have to have a little bit of, you know, some injections per se of some communism, or some injections of socialism. You know, you've got to, it's got to be a balance. You know, you can't just stick with, you know, we're just, this is our way, we're only going to be capitalistic, and, and all of this stuff, you know, it's, it's such a huge picture, and you've got to take bits and pieces of everything and inject it in to get, you know, it's just like the stock market, you know, it goes up and down, it's ebbs and flows, it's based on the economy, it's based on so many things, you've got to, you've got to put these injections that I'm calling them into the system to get the outcomes, you know. So Right. Yeah. Let me If you don't mind, I need to use the restroom real quick. I'll be right back. Can you hear me? Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. Okay. 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