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#31 what the 5f6 of 231Pu looks like and relates to the Great Walls
Now the reason I said this textbook is the best at showing dots of the
electron-dot-cloud is because they show 90% of the dot concentration is near the nucleus whereas other authors just willy nilly stipulate dots as their free hand art stiples a dot. The closer one is to the nucleus is where 90% of the dots are located. Now I had a look for any astronomer to give numbers data as to how much matter is contained in the bandwidth-distance of Great Wall-Sloan Great Wall- Quasar Zone. How much of the matter in the Observable Cosmos lies in that region of the Great Walls and Quasar Zone? The best I could find was not good enough of a report. It said that the Sloan Great Wall was 6 X , that is six fold denser than the Great Wall. But, that leaves me with the question of how much denser is the Great Wall of galaxies from the density of the Local Group which the Milky Way lies. What I am looking for is a density difference of the Great Walls with the Local Group as between 100 X to 10^9 times more dense. I think the problem here that astronomers have is that their attention was never placed on a measuring of the density difference between Local Group and Great Walls because their attention remained on a stupid question, for which that stupid question was of missing matter to satisfy their dumb general-relativity. So they never compared density of Great Walls to Local Group because they ran off on a tangent over missing mass. Now the last time that I made an effort to solve the Schrodinger Equation for how the 5f6 of plutonium looks like is valid today. It was a hydrogen atom solution of the 5f6 and I wielded a 6 sided figure, that is 6 lobes equally spaced around a nucleus and that nodes separated the 6 lobes. But each of those lobes had a "nipple shape" at the end closest to the nucleus and where thicker and rounder where the Milky Way would be and much like the lobe shapes found in this book: Seaborg & Loveland book The Elements Beyond Uranium 1990 on pages 72- 73. However, when solving for the hydrogen atom of the 5f6 back in 1991, there was another node that comes in prominence in the 5f6 that is close to the nucleus. It is a wheel like node and intersects the 6 lobes. It would be a node that would appear as a void near the Great Walls and Quasar Zone. So, based on my rough trig calculations of the Schrodinger Equation for the 5f6, I get a node near the lobe near the nucleus. So do we find a Void of prominence just before we reach the Great Wall? Also, there was no website that spoke of the bandwidth distance of the Great Walls versus the rest of the Cosmos. Now I am going to estimate that the distance covered by the Great Walls and Quasar Zone is a bandwidth distance of 30 Megaparsecs and that the entire rest of the Observable Cosmos is a 300 Megaparsec distance. What I want is the percentage of Space occupied by the Great Walls plus Quasar Zone compared to all of the Observable Cosmos. I believe this percentage is somewhere between 10% to less than 1%. The reason I need distance comparison is because 90% of a electron-dot- cloud is within 10% of the distance going away from the nucleus. Likewise, 90% of the matter of the observable Universe is within that 10% distance nearest the Nucleus of the Atom Totality. Archimedes Plutonium www.iw.net/~a_plutonium whole entire Universe is just one big atom where dots of the electron-dot-cloud are galaxies |
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