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The Mathematical Bases for the Creation of a Homogenous 5D Universe

DOI: 10.4236/ojpp.2024.142030, PP. 481-487

Keywords: Extended Fermat’s Last Theorem, Gravitons, Newtonian Law of Gravity, Temperature, DLRO in Monopoles and Gravitons, Black Holes

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Abstract:

Several important physical implications left out in The Five Dimension Space-Time Universe: A creation and grand unified field theory model. Book, are presented under rigorous mathematical theorems. It was found that Temperature, a classical variable, must be added as an imaginary component to time, under the Quantum uncertainty dtdE = h/2π, so that the Gell-Mann Quark model can be verified, with gauge invariance, to form hadrons at the Bethe Fusion Temperature. Accordingly from the corresponding uncertainty dpdr = h/2π. Pairs of Diagonal Long Range Ordered gravitons, with continuous frequency spectrum together with those represented by magnetic monopoles must be formed within the space r, of the homogenous 5D manifold, without the presents of photons, thus defines the 5D as a Black Hole. Then from which we can derive the classical Newtonian Law of attractive Gravity, as the 5D manifold is mapped by Perelmann Ricci-flow entropy mapping and the DLRO graviton pair symmetry is broken and converted into two masses, with motions satisfying Special Relativity in the doughnut shape Lorentz manifold, thus indirectly verifies the principle of Covariant Riemannian curvatures and General Relativity theory.

References

[1]  Aczel, A. D. (1997). Fermat’s Last Theorem Unlocking the Secret of an Ancient Mathematical Problem. Penguin Press.
[2]  Fung, P. C. W., & Wong, K. W. (2015). On the Origin of Mass and Angular Momentum of Stellar Objects. Journal of Modern Physics, 6, 2303-2341.
https://doi.org/10.4236/jmp.2015.615235
[3]  Gell-Mann, M. (1964). Nonleptonic Weak Decays and the Eight-Fold Way. Physical Review Letters, 12, 155.
https://doi.org/10.1103/PhysRevLett.12.155
[4]  Higgs, P. W. (1964). Broken Symmetries and Masses of Gauge Bosons. Physical Review Letters, 13, 508.
https://doi.org/10.1103/PhysRevLett.13.508
[5]  Maxwell, J. C. (1865). A Dynamical Theory of the Electromagnetic Fields. Philosophical Transaction of Royal Society of London, 155, 459-512.
https://doi.org/10.1098/rstl.1865.0008
[6]  McGlinn, W. D. (1964). Problem of Combining Interaction Symmetries and Relativistic Invariance. Physical Review Letters, 12, 467.
https://doi.org/10.1103/PhysRevLett.12.467
[7]  Meijer, D. K., & Wong, K. W. (2022). Scale Invariant Symmetry Breaking of a Musical Code from 5D Superfluid Sub-Quantum Space Is Instrumental in the Fabric of Reality, Life Conditions and Cosmic Consciousness.
[8]  NASA/Goddard Space Flight Center (2012). Photo Milky Way Galaxy.
[9]  Perelmann, G. (2002). The Entropy Formula for Ricci-Flow and its Geometric Applications. ArXiv. math. DG/0211159.
[10]  Perelmann, G. (2003). Ricci-Flow with Surgery on Three Manifolds. ArXiv. math. DG/0303109.
[11]  Wong, K. W. (2024) Step by Step Creation Logics. Open Journal of Philosophy, 14, 93-99.
https://doi.org/10.4236/ojpp.2024.141008
[12]  Wong, K. W., Dreschhoff, G. A. M., & Jungner, H. (2014). The Five Dimension Space-Time Universe; Acreation and Grand Unified Field Theory Model. Scientific Research Publishing.
[13]  Wong, K. W., Dreschhoff, G. A. M., Jungner, H., Fung, P. C. W., & Chow, W. K. (2018). The Magnetic Monopoles in 5D Homogenous Space-Time. Physics Essays, 31, 493-495.
https://doi.org/10.4006/0836-1398-31.4.493

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