Monday, October 18, 2021

Accelerated Rate In The Proximal Local Presence Of Metric-Based Chern-Simons Singularities

 An acceleration in the rate of the covariant proximal local presence, of those correlative respective metric-based Chern-Simons singularities, that are here to be incurred upon the Gliosis-related topological manifold, at the Poincare level, of the holonomic substrate of a given arbitrary directly corresponding Noether-Based Fadeev-Popov-Trace eigenstate, as this physical entity, of such an inferred basically particle-related eigenstate of discrete energy impedance, is here to be spatially transferred from one delineation-related locus of distribution, to an ensuing correlative delineation-related locus of distribution, will thereby have a relatively high affinity, of working to tend to bear the resultant consequential proximal local presence, at the progressively re-delineated kinematic locus of such a said Fadeev-Popov-Trace eigenstate, of tending to result in allowing, for a heightened probability, in which such a given arbitrary inferred eigenstate, of basically a particle-based quantum of discrete energy impedance, is here to be working to bear an increasingly spurious tense of kinematic motion, at the internal reference-frame, of  that general field-density, that is here to be proximal local, to its immediately externalized Ward-Cauchy-Related field operand. SINCERELY, SAM ROACH.

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