Friday, August 6, 2021

Scalar Amplitude Of Torsional Wave-Tug

 Let us initially consider two different given arbitrary covariant mass-bering cohesive sets of discrete energy quanta (as in a "team"of mass-bearing superstring), that are here to both be isotropically spinning at the same relativistic rotational rate, when this is here to be taken, in relation to the correlative motion of electromagnetic energy, as well as that both of such respective mass-bearing cohesive sets of discrete energy, of such a given arbitrary case scenario, are also to be traveling transversally at the same relativistic rate, when this is here to be taken in relation to the motion of electromagnetic energy. Both of such cohesive mass-bearing sets of discrete energy, are here to work to be exhibiting the general nature, of displaying a tense of a Noether-Based Flow. Next; One of such stated covariant mass-bearing cohesive sets of discrete energy quanta, is here to be working to exhibit the display, of a larger number of spatial dimensions, than the other of such stated covariant mass-bearing cohesive sets of discrete energy quanta. Otherwise, both of such inferred "teams" of discrete energy, are here to behave in a relatively similar manner. That mass-bearing cohesive set of discrete energy quanta of the two, that is here to be exhibiting the display of a larger number of spatial dimensions than the other one, will consequently quite often tend to result, in working to exhibit the display, of a higher scalar amplitude of torsional wave-tug, upon its immediately external environment, than the other of such stated mass-bearing cohesive sets of discrete energy quanta, that are of such a respective given arbitrary case scenario. I WILL CONTINUE LATER! SAM ROACH.

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