Showing posts with label resistance. Show all posts
Showing posts with label resistance. Show all posts

Sunday, November 27, 2022

Flow Of Magnetic Charge

 The permittivity of the flow of magnetic charge, works to form current (charge per time). And; The impedance of the flow of magnetic charge, works to form resistance (energy*time per charge squared). The dot product of the permittivity of the flow of magnetic charge, With the impedance of the flow of magnetic charge, works to form voltage, (energy per charge). TO BE CONTINUED! SINCERELY, SAMUEL DAVID ROACH. 

Monday, January 25, 2021

Homeomorphic Isotropic Stability — High Tense Of Majorana-Weyl-Invariant-Mode

 Isotropically stable mass-bearing cohesive sets of discrete energy quanta, that are here to be spatially transferred in a homeomorphic manner, — by the kinetic assistance of a Legendre tense of (co)homology, tend to work to bear a relatively higher scalar amplitude of a Majorana-Weyl-Invariant-Mode — to where this will often tend to be associated in one manner or another, with a charged particle, that is here to be in the process of being spatially conveyed, with a relatively low scalar magnitude of electrical resistance. SAM.

Friday, March 30, 2018

More Stuff As To Cohomological Generation, Voltage

Let us initially consider an electron -- that is to be smoothly transferred in a metrical-related manner, through a given arbitrary initial medium over time.  Let us then say that the said respective electron, is to initially be smoothly generating cohomology over time.  Let us next say that the medium in which the said electron is to be translated through is to change in its molecular composition -- into a medium that is here to bear an ensuing stronger electrical resistance, -- in spite of the condition that such a so-stated electron is to here to continue to generate cohomology at the same rate per time.  This will then mean -- that the electron is to now to bear more energy per cohomological generation, over time.  This will furthermore mean -- that the electron is to now to bear more energy per generation of charge, over time.  This will then mean, that the said electron will consequently work to bear more voltage -- as it is here to maintain its charge per time -- in the process of going through more of a scalar amplitude of electrical resistance over time.
I will continue with the suspense later!  To Be Continued!  Sincerely, Samuel David Roach.