Cosmic Microwave BackgroundAnswered

Is the cosmic microwave background left over from the light of the first day of creation?

A viewer asks whether the light God created on the first day is connected to the cosmic microwave background radiation.

Answer

You will get that if you read my new book, The First Four Days of Creation. The light is now just below the water. You remember Psalm 148, verse 4, says that the water is above the firmament. Today it is. The water is above the firmament: the water that first appeared on the first day, that covered the earth. And then when God stretched the firmament, that is, the heavens, that water was taken out to the remote recesses of space, where now it sits at the rim of the heavens, or the rim of the firmament. And right below that is the light that was there on the first day. See, when this firmament was stretched out, the light was also taken, the light and the water. The water now forms the flooring, you might say, of the third heaven. And it's all ice, because it's too cold to be anything liquid. So the light is diminished severely from what it used to be on the first day. Did I say CMB? I'll explain that to you. It's quite dim because it's been dissipated, and it's surrounding the whole universe, just enough of it to form a thin layer at the rim of the universe. And that's exactly at 2.75 degrees. And how do we know that? We measure it as the cosmic microwave radiation at 2.75 degrees Kelvin. Don't mix up the light of day one with the sun of day four. They are two totally separate things doing two totally separate jobs. And in order to do its job, the light of day one has to be at least 10,000 times the size of the sun. Otherwise it couldn't melt all the ice that was gathered around the earth. That ice has to be melted, and it has to be set out into the remote recesses of space as God stretches out the firmament. And as you stretch it out, you dissipate it, and you leave just a thin layer that's available for the rim of the universe. And because of that, we now have very little heat out in space. We have 2.75 degrees Kelvin, and that comes to us as microwaves. And that's how we know it's there. So not much, but enough that we can notice it and see what it does to the universe. The variation is like 2.7529 to 2.7522. So not much, but it's enough that we get what they call anisotropy, that is, disturbances in the equilibrium of the microwave radiation. So whereas the equilibrium would settle down to 2.75, we still have fluctuations, very small, but enough that, like a painter painting with a brush can paint a tree here and a tree there and a flower here and a flower there, that's what this giant painting in the sky has done with these variations in the microwave radiation. They put a little here and a little there and a little here and a little there. And when you add them all up, they form an arrow, a direction that goes from south to north or from east to west. And it's called the axis of evil, as the secular astronomers have called it. It goes right alongside the equator and the ecliptic, right inside the middle of those, at about 16 degrees, and it's called the axis of evil. That's the way the Big Bangers want you to look at it, but that's not the way it is. They don't know what to do with this axis of evil, and that's why they say it's the axis of evil: because it doesn't give them what they want. It gives them a geocentric universe. If you have a center and a direction, you've got a geocentric universe. So that's what the light gives us: 2.75 degrees throughout the whole universe. And we see that as microwave radiation. And that microwave radiation is demarcated in certain respects and shows us that there is a direction and a center to the universe. I'm sorry I said it wasn't before, and I'm glad I caught that.

Answered by Dr. Robert Sungenis

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