Sunday, March 21, 2021

Incoming Mini-String-Related Segmentation -- Elastic Modulus Of Light-Cone-Gauge Eigenstate

 To those who are not familiar with my particular model of string theory, -- I believe there to be, what I term of as being, "mini-stringular (mini-string-related) segmentation," -- that works to help in forming and orchestrating the multiplicity, of the covariant fields, that are here to exist among the countless superstrings, that are here to work to form the existence of discrete energy.

The stronger of a scalar amplitude of the covariant delineation of mini-string-related segmentation, per instanton, that is here to be brought into the proximal local region of the core-field-density of a given arbitrary discrete quantum of energy, is to be, -- the more "limber" that the directly corresponding light-cone-gauge eigenstate, that is here to be the primary physical operator, that is to act as the wave-based nature of the correlative respective discrete energy impedance, that is here to be of such a stated given arbitrary discrete quantum of energy, will thereby consequently tend to be. The more "limber" that a light-cone-gauge eigenstate is to tend to be, the higher that the scalar amplitude of the elastic modulus, that is here to be correlative to such a stated respective light-cone-gauge eigenstate, will consequently tend to be. Therefore; the stronger of a scalar amplitude of the covariant delineation of mini-string-related segmentation, per instanton,  that is here to be brought into the proximal local region of the core-field-density of a given arbitrary discrete quantum of energy, is to be, -- the higher that the scalar amplitude of the elastic modulus, that is here to be correlative to such a stated respective light-cone-gauge eigenstate, will consequently tend to be. To Be Continued! Sincerely,  SAMUEL DAVID ROACH. (1989).

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