Let us initially consider two different and distinct analogous covariant charges, that are here to each be initially equivocally conducted, through two different and distinct respective analogous individually taken circuitry paths, as this is here to be mathematically considered, over the course of a dual tense, of a respective Fourier Transformation. Both of such tenses of covariant circuitry paths, are to have the same "electrodynamic pressure," applicably incurred upon them, when individually taken. One of such inferred tenses of current, is to be basically left alone. The other of such inferred tenses of current, is to have a heightened tense of entropy, applicably incurred upon it (which often works to imply added heat applied). That kinematically exhibited electrodynamic circuitry path of current of the two, that is here to have a heightened tense of applicable entropy, that is here to be incurred, upon the the general flow of the multiplicity of topological manifold of those moving charges, of which are here to work to form the more entropic electrodynamic current of the two, will consequently often tend to have a greater resistivity and a lower conductivity, than the other of the two individually taken kinematically exhibited electrodynamic circuitry paths of current. I WILL CONTINUE WITH THE SUSPENSE LATER! TO BE CONTINUED! SAM ROACH.
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