Randall Carlson

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1,469 appearances 2 recordings 2 series first heard Apr 2025 last heard 11 Mar

Randall Carlson’s voice in public audio — every appearance, attributed to the second.

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So it, this created a paradox and it was called the energy paradox. Where the hell did the energy come from? And again, I've done a whole, whole presentation on this. I don't think I've given it to, to, uh, Ryan. Maybe I did, but so basically what they realized was, well, Where is the most heat energy available on planet earth today? Well, sub-Saharan Africa might be a candidate.
Tropical oceans would be a candidate. So what would happen if we move the entire mass of ice that you see there to a tropical ocean? It's going to melt very quickly. It's going to melt quick, but at least three times longer than the ice it took for the ice to actually melt. That was the paradox. Then at the end of the 73 conference, they scheduled another one. I think it was 75. They went back.
And at the end of that one, they said, there's an error in the data somewhere. So we'll put this on the shelf and get back to it. And to my knowledge, no one's really gotten back to it. to solve that question. So what's the answer? Well, I think that the two possibilities, impact, hypervelocity impact, and some type of a solar event. However, I still, I'm going to lean towards the impact. And why?
Because if you chart the drumlin swarms under the ice sheet, what you see is that there are epicenters of melting. Like we can go up to the Nechaco Plateau, which is Prince George, British Columbia. That was an epicenter of melting. And we can follow the paths of that meltwater, which I've done now, through all of these north-south trending river valleys, and they all converge on the same area.
And there's other areas that can be identified that see normally you would presume just like with the little ice age glaciers they're melting back from the margin and they recede generally from the north to the uh from the south towards the north Yes, there was recession from the margins, but on the other hand, there were epicenters of melting.
There were hundreds of miles, even like a thousand miles removed from the margin of the ice sheet. Why would you have ice melting, you know, a thousand miles up under the center of the ice sheet? Right. It's weird. It would require an input of energy of some kind at that point. Yep. There we go. Now that Ryan's pulled that up, that's interesting that you've got that.
If you zoom in and you look at those, so that's the plateau area, plateau country up there. And look at those valleys. You see how they're more or less north-south trending. That Rocky Mountain Trench is that long, linear feature. Yes. Follow that down. Keep going. Yeah. And it's terminus. It'll be at Flathead Lake.
right there and at the south end of flathead lake you see the town of polson zoom in and you'll see that it's see that that's terminal mooring right there and that terminal mooring has been breached by the flathead river but all that hummocky stuff that's terminal mooring then you go south of there in mission valley where it's more or less flat that's all glacial outwash
Come over to the west, Camas Prairie, which is that open circular kind of basin. Come to the east a little bit. You're almost there. Right, yeah, go north. Yeah, there you are, Camas Prairie. Zoom in there. And now go down to your satellite view. You're going to see something pretty remarkable. Now go zoom in and start scrolling up to the north. Stop right there and you'll see Highway 382.
Yeah, zoom in right there. Look at there. Look at what you're looking at there. These are gigantic current ripples. Now, this is what led J.T. Pardee in his 1944 paper, I believe, which was the last paper he wrote, a scientific paper, after he had a long career at the U.S. Geological Survey. His first paper was published in 1910, and it was called Glacial Lake Missoula.
And he had discovered evidence because of sediment on the floor and high shorelines that there had once been a giant lake there, right? That these mountain basins held this giant lake. 34 years later, roughly... He publishes his second paper and this paper is entitled unusual currents in Lake Missoula.
His evidence for unusual currents was, as you're seeing right here, these are gigantic current ripples slowly scrolled in the north, Ryan. Yeah, and look what you've got here. You've got a huge flow coming straight down. Then you've got a flow kind of coming that's flowing to the southwest. And you can see, I mean, you can see these giant ripples.
Some of these ripples are the height of a five-story building. The wavelength is 300, 400 feet sometimes. You have farms that are sitting in the troughs of those ripples, and you can't see over them. Well, this was a gigantic flow that came from the north, obviously melt water. And how do you explain this? Well, you can't deny that this is a gigantic flood that came through here.
But again, what's not happening is that this flow is being correlated, say with the giant flow that came down through Minnesota or North or South Dakota or farther east. Because see what we're seeing with LIDAR now is that there are giant ripple trains all over the place.
I mean, we're beginning to see, you know, see, it took J. Harlan Bretts 20 years or more traversing the eastern Washington to be able to map the scab lands. What we can see now in an instant, in an instant from satellite survey.
Now, of course, we've got digital elevation models, we've got LIDAR, we've got ground penetrating radar, we've got all of these tools at our disposal that can increase our ability to perceive the planet. And what we're discovering is that the whole planet has engraved into it evidence of these gigantic catastrophic events. Things that we couldn't see a generation ago, we're able to see now.
And so one of the things that I'm trying to do is trying to confer upon people the ability to see this stuff, to know that there's this epic story engraved into the surface of this planet that's been waiting 12,000 years to get deciphered. And now we're in this unique perspective where we can actually begin to put the pieces together.
And I think, to me, the insight that we derive from this is that what we're seeing here is evidence that planet Earth is part of a much larger cosmic ecosystem. And that sometimes things happen in the cosmos and it translates directly into events down here below in the surface of the planet. And to me, at this point, it's indisputable. There's... I mean, how are you going to explain this?
Go ahead. Explain it. With some means other than a gigantic flow. And I've been through here many times, and you can see the high shorelines on the mountainside. And they're 4,200 feet above sea level. 4,200 feet. The floor is 3,800 feet. Sorry, 2,800 feet above sea level. The valley is five miles wide. Do the math.
When this was flowing through here, you have to imagine a river five miles wide and 1,400 feet deep. That's what created this terrain we're seeing here. Five miles wide, 1,400 feet deep. Now, 99.99% of the human race does not know about this. So that's kind of my mission is to say, well, archaeologists, if you're asking the question, well, where's the evidence? There it is. Yeah. It's gone.
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