Tuesday, March 1, 2022

Rate Of Perturbation Of Chern-Simons Invariants

 The more rapidly that the perturbation of Chern-Simons Invariants is to be performed, by a given arbitrary respective Noether-Based mass-bearing cohesive set of discrete energy quanta, the more of a tense of a Ward-Cauchy-Related strain, that is here to be applied, upon the directly associated superstring-related harmonically dispersed eigenstates of homotopic residue; to where, this will consequently tend to work to help, in allowing for such a said set of discrete energy quanta, to thereby consequentially tend to work to form a greater covariant proximal local scalar magnitude of voltage, as this is here to be taken, at the Poincare level to the reference-frame, that is of the directly associated kinematically delineated magnetism, that is here to be physically generated, by the inferred overall general process, in which the recursively kinematic covariant co-differentiable superstring-related harmonic dispersion of proximal local homotopic residue, is here to "intermingle" with the pulse of its directly corresponding strain, when in conjunction with the flow of the permeation of the net gauged-action, that is of here to be of those directly associated cohomology-related eigenstates, that are here to act, as latched states of superstring-related core-field-density, that are here to bear a viable tense of association, with other of such sets of discrete energy quanta, in partial account, via their conductive magnetic characteristics, which is here to be generally facilitated, by the inter-relationships of the activity of the multiplicity of charged energy eigenstates, of which are here to bear their conductive characteristics, primarily due to the dual effect of the strain of harmonically dispersed superstring-related homotopic residue, when this is taken, in its relation to the respective permeability of harmonically dispersed superstring-related homotopic residue. TO BE CONTINUED! SAM ROACH.

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