Thursday, March 22, 2018

As To Electromagnetic Energy And Cohomological Generation

Let us initially consider a photon that is colliding with an electron, that is of one given arbitrary atom.  The said electron is situated here at the relative external energy level or valence shell of the directly corresponding atom, that is here being discussed.  As the so-mentioned photon is here in the process of scattering upon the correlative electron -- the photon is here to temporarily become entropic, while the electron that is here to be collided into in a Gliosis-based manner, is to consequently jump back-and-forth an energy level, -- in so as to then to undergo the Fujikawa Coupling, to where the said electron is to result in working to release its spare discrete kinetic energy in the form of a photon (in the form of a discrete quantum of electromagnetic energy).  The earlier mentioned photon, that had just scattered upon the so-stated electron, in so as to become entropic -- is then to degenerate cohomology -- in the process of rebounding from an initial Rayleigh-related scattering, back into subsequently re-quantizing into the Hamiltonian operand of the respective general beam of electromagnetic energy -- that is proximal local to the so-eluded-to electromagnetic permeation of the Ward-Cauchy-related region, in which the electromagnetic energy is here to be scattering within.  During the course of the same general evenly-gauged Hamiltonian eigenmetric, the process of the Fujikawa Coupling, -- in which the electron that was just struck at the externalized core-field-density of its correlative light-cone-gauge eigenstate, is so as to release its residual spare discrete kinetic energy into a photon, -- is to work to generate cohomology.  Consequently, the scattering of light works to both degenerate cohomology in one genus of manner, while also working to generate cohomology in a different genus of manner -- as the correlative discrete quanta of electromagnetic energy is sprung upon the holonomic substrate of a mass-bearing discrete quanta of energy, in a Gliosis-based manner over time.  This is here to be a balance, that is here to be formed between that general Hamiltonian operation of entropy, that works to degenerate both cohomological eigenstates and cohomological eigenindices, -- and that general Hamiltonian operation of electromagnetic induction, that works to generate both cohomological eigenstates and cohomological eigenindices, over time.
I will continue with the suspense later!  To Be Continued! Sincerely, Samuel David Roach.

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