Just as any respective given arbitrary electron drops an energy level, this general tense of activity -- of which works to bear an antiholomorphic Kahler condition -- will, at this point in activity, work to initiate a directly corresponding Wick Action eigenstate. This said Wick Action eigenstate will then ensue to work to form a correlative Landau-Gisner Action eigenstate. The holonomic substrate of what is to here act in so as to work to perform the so-stated Landau-Gisner Action eigenstate, will then work to cause what may be called of here as an eigenstate of the here proximal local Fischler-Suskind-Mechanism. The just mentioned Fischler-Suskind-Mechanism, will then work to push the directly corresponding holonomic substrate of the correlative Klein Bottle eigenstate -- in so as to move this just mentioned eigenstate -- in what will here be in the relative norm-to-forward-holomorphic direction, in so as to work to move the so-stated holonomic substrate of the said Klein Bottle eigenstate -- into that general region of the relative Real Reimmanian Plane, so that those discrete quanta of energy, that are to here be in the need of re-attaining their fractals of discrete energy quanta, will be in such a substringular position, in so as to be facilitated to be able to then undergo their respective Gliosis-based interaction with the said holonomic substrate of the correlative eigenstate of the Klein Bottle. This so-stated activity of the Kahler-Metric eigenstate, will happen just after the said electron that is to here be releasing its spare kinetic energy, has to have then just dropped that correlative energy level, that is here being discussed.
I will continue with the suspense later! To Be Continued! Sincerely, Samuel David Roach.
Thursday, September 29, 2016
Part 7 Of Session 1 Of Course 20 -- Calabi Manifolds And Calabi Interactions
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electron,
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Part 6 Of Session One Of Course 20 -- Calabi Manifolds And Calabi Interactions
When an electron drops back-and-forth in energy levels -- this general genus of activity, works to form an antiholomorphic Kahler condition. This is on account of the condition, that such a said electron is to here immediately reverse in the general relative holomorphic direction -- as it works to drop an energy level. Such a so-stated antiholomorphic Kahler condition, works to then cause the ensuing activity of a proximal localized Kahler-Metric. This will then tend to work at helping to cause the emission -- of what is to then exist from within the Ward-Caucy bounds of the here directly pertinent electron, as the spare energy that is to here be brought into and then out of the so-stated electron, on account of the initial quantum leap back-and-forth of the said electron, to and fro the respective given arbitrary energy levels. The here ensuing activity of the so-eluded-to eigenstate of the proximal localized Kahler-Metric, will then work to help at bringing in the local Yukawa-based interaction -- of those two individually taken zero-norm-state-projections, that will then act, in so as to help in the process of the ensuing eigenstate of the respective correlative Fujikawa Coupling via the Green Function, in so as to help in the process of working to form a photon.
I will continue with the suspense later! To Be Continued! Sincerely, Samuel David Roach.
I will continue with the suspense later! To Be Continued! Sincerely, Samuel David Roach.
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10:21 AM
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eigenstates,
electron,
Fujikawa Coupling,
Green function,
Kahler-Metric,
Ward-Caucy,
Yukawa
Wednesday, September 28, 2016
Part Five Of Session 1 Of Course 20 -- Calabi Manifolds and Calabi Interactions
As one one-dimensional superstring of discrete energy permittivity is being released from the Ward-Caucy bounds, of any respective one directly corresponding electron -- the local centralized knotting of the Rarita Structure eigenstate, that is most directly affiliated with the locally associated Fourier-based differentiation, that is of the said respective electron -- is relatively discombobulated from its immediately prior condition. The thence caused decrease in the need, as to the amount of kinetic energy that the correlative electron is to then have, is to then result in the just previously stated relative discombobulation. Such a so-eluded-to back-and-forth wave-tug, that is applied to the Ward-Caucy-based conditions of the here pertinent electron, happens -- as it is to be tugged from initially moving inward into then immediately moving outward -- of which works to help in causing the tendency of such a released discrete quantum of energy, to then be pushed into that directoral-based holomorphicity, that is in the opposite relative direction from that by which the correlative nucleus of the directly pertinent atom is in. Such a drop, in and of itself -- in the corresponding energy level of the directly corresponding electron, will then act at such a rate -- by which the specific one-dimensional strand of energy, that is to here be released, will then tend to be brought to the "outskirts" of the Ward-Caucy bounds of the correlative electron, as a fully contracted open strand of kinetic spacial disturbance. As the said open strand of fully contracted kinetic energy, is to then be in the process of being pushed-out of the correlative electron, the two individually taken zero-norm-state -projections that both work -- in so as to tie the two ends of the initially stated one-dimensional superstring together, in so as to work to form a photon from the now released kinetic energy -- this of which has here been emitted from the so-stated electron, to where the process itself of the Fujikawa Coupling via the mathematical conditions that may be eluded-to by the Green Function, work to help in so as to provide that needed additional thrust, to the said emitted discrete quantum of kinetic energy, -- in so to then work to cause the then formed photon, of which is one discrete quantum of electromagnetic energy, to result in going at the speed of light -- when this is taken in multi-consideration with the directly associated Ward-Caucy-based conditions, that are to here be correlative to the locally proximal state, that may be associated with Snell's Law.
I will continue with the suspense later! To Be Continued! Sincerely, Samuel David Roach.
I will continue with the suspense later! To Be Continued! Sincerely, Samuel David Roach.
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12:37 PM
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eigenstate,
electron,
energy level,
Fourier,
Fujikawa Coupling,
Green function,
permittivity,
Rarita Structure,
Snell's Law,
Ward-Caucy
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