In a way; The effulgence of the multiplicity of the eminent internalized strain of a kinematic disturbance in space-time-fabric, is a negative i times the respective effulgence of the multiplicity of the eminent externalized strain of the earlier mentioned respective kinematic disturbance in space-time-fabric. SAM.
Tuesday, May 17, 2022
Effulgence Of Eminent Strain Of Disturbance In Space
Monday, May 16, 2022
Disturbance In Space -- Holonomy/Lagrangian Of Discrete Energy Phenomenology
Monday, February 28, 2022
As To Voltage And Current
The strain of harmonically dispersed superstring-related homotopic residue, tends to work to form electromotive voltage. Whereas; The permeability of harmonically dispersed superstring-related homotopic residue, tends to work to form electromotive current. Those latched topological eigenstates, that are facilitated in their eminent existence, in part, by the correlative linkage, that is here to exist, between the proximal local strain of harmonically dispersed superstring-related homotopic residue, And, the proximal local permeability of harmonically dispersed superstring-related homotopic residue, works to help in the general formation, of reductional cohomology. I WILL CONTINUE WITH THE SUSPENSE LATER! SINCERELY, SAMUEL DAVID ROACH. (1989).
Friday, February 25, 2022
Harmonic/Anharmonic Strain Of Energy-Related Phenomenology
At times; Sound applied to voltage, may often tend to be capable, of working to form a harmonic tense, of a strain of energy-related phenomenology. Whereas, at other times; Heat applied to voltage, may often tend to be capable, of working to form an anharmonic tense, of a strain of energy-related phenomenology.
Friday, November 26, 2021
Holomorphic Strain
The more uninhibited holomorphic directed strain, that is here to be incurred upon a mass-bearing cohesive set of discrete energy quanta, over a given arbitrary proscribed duration of relativistic time, the quicker that such a said mass-bearing cohesive set of discrete energy quanta, will consequently tend to be transferred, when in relation to the motion of electromagnetic energy. To be continued! Samuel.