Wednesday, April 17, 2019

Gauge-Bosons And Resonant Vibration

During BRST -- mini-stringular segmentation is fed into the general locus, of any one directly corresponding discrete quantum of energy, that is here to be undergoing the process of an iteration of instanton.  Aside from there being the respective provision for the general process of the activity of the Polyakov Action, the more mini-stringular segmentation that is here to be fed into the general locus of any one directly corresponding discrete quantum of energy,  the further that those correlative gauge-bosons are here to act -- in so as to "pluck" their directly corresponding second-order light-cone-gauge eigenstates, in order to work to form those Schwinger-Indices, that work here to help in the perpetuity of the kinematic activity of substringular fields -- to then act, in so as to tug the said second-order light-cone-gauge eigenstates that these are here to pluck, to a greater scalar amplitude of a correlative distance of a wave-tug, in such a way that is of a Gliosis-related manner, over a directly corresponding gauge-metric.  Consequently, the further that the respective gauge-bosons are here to pull their associated second-order light-cone-gauge eigenstates, over the so-eluded-to respective directly corresponding gauge-metric -- the higher that the directly associated fractal of resonant vibration will be, at the proximal locus of the region at which such a so-eluded-to third-order Schwinger-Index is here to be formed.  Furthermore -- when one is here to be dealing with a mass-bearing orbifold eigenset -- the higher that the scalar amplitude is, as to the relative degree of a Majorana-Weyl-Invariant-Mode, that such a said orbifold eigenset is here to express -- the more that such a so-stated orbifold eigenset will tend to exhibit a larger tense of a resonant vibration.  Consequently -- when an orbifold eigenset is here to exhibit a greater scalar amplitude of a Majorana-Weyl-Invariant-Mode -- the further that those correlative gauge-bosons, that work to comprise the substringular neighborhood of their composite individually taken discrete quanta of energy, will then tend to pull their correlative second-order light-cone-gauge eigenstates, in so as to then to be working to form the presence of what will here be the existence of Schwinger-Indices -- that are then here to bear a higher tense of a fractal of resonant vibration.  The resultant integration of such Schwinger-Indices, that are here to be related to a tense of a relatively high resonant vibration, will then tend to bear an effect upon the general local regional electrostatic field, -- that will then tend to work to be of a relatively hightened tense of a resonant vibration.
I will continue with the suspense later!  To Be Continued!  Sincerely, Samuel David Roach.

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