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>> No.15649865 [View]
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>> No.15300940 [View]
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>>15300930
Numbers which are quite less than infinity (positive ones) also exist.

>> No.15293042 [View]
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>>15293040

>> No.15176863 [View]
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There is a well known question in QFT about finding exact solutions to the anharmonic Phi^4 field. One might call that the main question about how QFT works. One other hand, there is a more fundamental question which asks, "Why do we have the particle we have not some other ones? Why six quarks and six leptons but not seven of one and five of the other, with 11 zerberts too?" I call that the fundamental question of quantum field theory and I think I solved it. The spectrum of lattice vibrations in my cosmological model (pic) is exactly the spectrum of particles in the standard model and that is very good because a QFT is often constructed by taking the limit of vibrating lattice as the lattice spacing goes to zero.

>> No.15175580 [View]
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>implying 3D time beyond the horizon
>implying timecube

>> No.15095413 [View]
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M3

>> No.14998405 [View]
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>>14998381
The abstract realm is the disjoint union of two 5D manifolds in the de Sitter and anti-de Sitter topologies respectively, and wherein abstract distance is given by a pair of 5D Kaluza--Klein metrics that approach a common limit at a 4D surface of tangency between the the 5D spaces. The 4D surface is the physical realm.

>> No.14814418 [View]
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>>14813745
>How do our cells know to grow into 5 prongs at the end of longer prong?
I've actually shown that there have to be two different unit cells intersecting each instance of H.

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