Sunday, July 25, 2021

Spin -- Charge -- Entropy

 When one is to consider the physical attributes of a mass-bearing superstring of discrete energy permittivity, that is here to work to comprise a "team" of such superstrings, such an inferred discrete quantum of energy permittivity, will often work to bear its innate relative holomorphic tendency of direction, that it is inclined to move into. When one is to consider the physical attributes of a correlative "team" of discrete energy quanta, that is here to be comprised of by such said superstrings, such an inferred mass-bearing cohesive set of discrete energy quanta, will often work to bear the same general tense of an innate relative holomorphic tendency of direction that it is inclined to move into, as those individually taken superstrings of discrete energy quanta, that are here to work to comprise the topological manifold, of its directly corresponding "team" of energy quanta. The directional tendency of flow of the said "team" of energy, is to tend to "win-out," over the directional tendency of flow of the said superstrings. The ramifications that are here to be related, to the physical condition -- by which the individually taken discrete energy quanta, that are here to work to comprise such a "team" of energy, are to often not have the general tendency of moving into their innate tendency of direction, works to form what may be termed of, by my model of string theory, as being, "Chern-Simons Invariants." Chern-Simons Invariants are only actually "invariant," when both the relative speed and the relative direction, of the motion of the directly corresponding mass-bearing cohesive set of discrete energy quanta, is to remain the same, in relation to the motion of electromagnetic energy. Whenever a mass-bearing cohesive set of discrete energy quanta, is to work to bear a charge, such an inferred "charged particle," will tend to work to bear a tense of spin-orbital oscillation. Whenever a phenomenology is to work to bear a consistent tense of spin-orbital oscillation, it will consequently tend to be consistently altering in its direction. Such a consistent alteration in the direction of a "team" of discrete energy, is often to tend to be attributable, to a consistent alteration in a change in direction, relative to the motion of electromagnetic energy. Therefore; a mass-bearing cohesive set of discrete energy quanta, that is here to be consistently spinning, will often tend to work to bear a consistent tense of a perturbation, in its directly corresponding Chern-Simons Invariants. When those Chern-Simons Invariants, are to work to bear a correlative tense of perturbation, to where such a said "perturbation," is here to be directly corresponding to a mass-bearing cohesive set of discrete energy quanta, that is here to work to bear a tense of spin-orbital oscillation, such an inferred "team" of energy, will consequently tend to emit certain metric-gauge-related eigenstates -- that are here to tend to be directed both outward and away, from that general region of the proximal local core-field-density, of such a said "team" of energy, to where such an emission of metric-gauge-related eigenstates, is here to be externally delineated away from its source of physical generation, as a cross-product-related tense, or as a  tangential course, of homotopic flow. The harmonic output of such emitted perturbative Chern-Simons Invariant-Based metric-gauge-related eigenstates, is on the order of acting as "charge," whereas the anharmonic output of such emitted perturbative Chern-Simons Invariant-Based metric-gauge-related eigenstates, is on the order of acting as "entropy." TO BE CONTINUED! SINCERELY, SAM ROACH.

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