A Relativistic Escape Velocity Maximum of Light Speed

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DOI: 10.4236/jhepgc.2016.23034    1,884 Downloads   6,129 Views  Citations
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ABSTRACT

There are parallels between the time distortion equations of General and Special Relativity. The time distortion in Special Relativity limits the “Real” velocity of a particle to the speed of light |c| by slowing the velocity of bosons/energy and increasing the mass of fermion||lepton (or matter) particles. In General Relativity, the gravitational slowdown of bosons/gravitons limits the escape velocity |v Esc| to light speed. |v Esc = (2GM/r)0.5| can also be written as |v Esc2 = 2GM/r|. So an alternate grammar for the equation could be
The above contests currently held properties of Schwarzschild Objects. Relativistic theory predicts the slowdown of gravitons/bosons, while their velocity only approaches zero. The different mathe-matical logic of Gravitational Force ||GF|| GF = GMm/r2 would mean no limit on the force. Matter formed through compression of bosons can escape after formation by absorbing kinetic energy from the slowing photons/bosons in its surroundings. So matter formation can occur via a steady-state mechanism. The limit on v Esc allows matter to escape in events that parallel both the Big Bang and Cyclic cosmology. Additional arguments are made as to the validity of relativity.

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Taylor, D. (2016) A Relativistic Escape Velocity Maximum of Light Speed. Journal of High Energy Physics, Gravitation and Cosmology, 2, 383-391. doi: 10.4236/jhepgc.2016.23034.

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