From <i>E</i> = <i>mc</i><sup>2</sup> to <i>E</i> = <i>mc</i><sup>2</sup>/22—A Short Account of the Most Famous Equation in Physics and Its Hidden Quantum Entanglement Origin — Oak Academic Publishing
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From <i>E</i> = <i>mc</i><sup>2</sup> to <i>E</i> = <i>mc</i><sup>2</sup>/22—A Short Account of the Most Famous Equation in Physics and Its Hidden Quantum Entanglement Origin
Department of Physics, University of Alexandria, Alexandria, Egypt
1 Department of Physics, University of Alexandria, Alexandria, Egypt
Einstein’s energy mass formula is shown to consist of two basically quantum components E ( O ) = mc 2 /22 and E ( D ) = mc 2 (21/22). We give various arguments and derivations to expose the quantum entanglement physics residing inside a deceptively simple expression E = mc 2 . The true surprising aspect of the present work is however the realization that all the involved “physics” in deriving the new quantum dissection of Einstein’s famous formula of special relativity is actually a pure mathematical necessity anchored in the phenomena of volume concentration of convex manifold in high dimensional quasi Banach spaces. Only an endophysical experiment encompassing the entire universe such as COBE, WMAP, Planck and supernova analysis could have discovered dark energy and our present dissection of Einstein’s marvelous formula.
KeywordsSpecial RelativityVarying Speed of LightHardy’s Quantum EntanglementDark EnergyMeasure Concentration in Banach Space‘tHooft Fractal SpacetimeWitten Fractal M-TheoryE-Infinity TheoryTransfinite Cellular AutomataGolden Mean ComputerEndophysicsFinkelstein-Rössler-Primas Theory of Interface
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