Thursday, August 20, 2020

Tensors Of Oscillation And Variety Of Correlative Formed Schwinger-Indices

 The higher that the number of the tensors of oscillation, which are here to exist over the course of the net radial translation of the spin-orbital-related motion, of those super-strings of discrete energy permittivity, which are here to work to comprise any given arbitrary cohesive set of discrete energy quanta, -- then, the more of a variety of potential types of Schwinger-Indices that may consequently tend to be able to be formed, by that general action, in which those correlative gauge-boson eigenstates, that are here to be proximal local to the general topology of those individually taken discrete energy quanta, that are to work to comprise such a cohesive set of discrete energy quanta, are to "pluck" their directly corresponding second-order light-cone-gauge eigenstates, -- in such a manner in which those consequentially resultant Schwinger-Indices are thence to be formed, in so as to propagate relatively outward throughout that general stratum that may be described of here as being of the Rarita Structure.  This will consequently work to mean, that when there are a relatively high number of spin-orbital tensors, that are here to be directly associated with the kinematic differentiation of those discrete energy quanta, that work to form the general topological stratum of any given arbitrary respective cohesive set of discrete energy quanta, that this general type of an activity, will often tend to form an increased potential variety in the general type of net gauged-action, that the directly corresponding Ward-Cauchy-related permeability will tend to be able to spontaneously express, over a correlative succinct period of time. Sam Roach.

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