Increased heat, is often associated with increased entropy. Increased entropy, is often associated with increased charge de-generation. That is part of as to why, electrical circuitry that is here to be associated with a relative increase in heat, tends to be less efficient, than electrical circuitry, that is here, instead, to be associated with a relative decrease in heat. TO BE CONTINUED! SINCERELY, SAMUEL ROACH.
Friday, August 19, 2022
Increased Entropy -- Charge De-Generation
Sunday, August 8, 2021
Heat/Sound -- Disorder/Order
Just as the physical application of an extensibly high scalar amplitude of heat, upon the topological manifold of an electrodynamic mass-bearing cohesive set of discrete energy quanta, is often to tend to be directly associated, with a relatively significant scalar amplitude of entropy; -- The physical application of an extensibly high scalar amplitude of sound, upon the topological manifold of an electrodynamic mass-bearing cohesive set of discrete energy quanta, is often to tend to be directly associated, with a relatively significant scalar amplitude of charge. Heat often tends to be more associated with disorder than order; And, charge often tends to be more associated with order than disorder. This is why electrical circuitry, that is here to have the general characteristic of "running-hot," will often tend to be relatively inefficient; Whereas, electrical circuitry, that is here to have the general characteristic of being "super-cooled," will often tend to be relatively efficient. I WILL CONTINUE WITH THE SUSPENSE LATER! (1989). SAMUEL DAVID ROACH.