Wednesday, December 1, 2021

Relatively Smooth Transition Of Lorentz-Four-Contraction

 A given arbitrary accelerating Noether-Based mass-bearing cohesive set of discrete energy quanta, that is here to be of a heuristic Yau-Exact nature, will have the general tendency, of working to bear a relatively smoother transition of Lorentz-Four-Contraction, than it otherwise would, if it were instead, to not be of a heuristic Yau-Exact nature. Therefore; It follows, that a given arbitrary accelerating Noether-Based mass-bearing cohesive set of discrete energy quanta, that is to be proximal local to a Ward-Cauchy-Related environment, that is here to not work to bear a perturbative tense of gravitational force (to where the relative proximal local gravitational force, of such a given arbitrary respective case scenario, is here to not be changing in its incurred effect, upon the earlier stated mass-bearing cohesive set of discrete energy quanta), will consequently have the general tendency, of working to bear a relatively smoother transition of Lorentz-Four-Contraction, than it otherwise would, if it were instead, to be of a proximal local Ward-Cauchy-Related environment, that would here be altering (changing), in its gravitational effect of incursion, upon the kinematic activity of such an inferred "team" of mass-bearing energy quanta. SAM.

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