ELECTROSTATICS INTERACTION EVTD2 IN SPACE - TIME WHERE POTENTIALS ARE IN eV QUANTUM LEVELS. CONDUCTOR SURFACE CHARGES AND THE RESULTING COMPRESSION AND EXPANSION PRESSURES OF EMV HAVE A MAJOR ROLE

Michel CONTE, Ileana ROŞCA

Abstract


Physics admits that the electrostatic interaction is carried out by the photon. Potentials and electric fields quantified in eV are derived from electromagnetic emissions radiated by the masses themselves and the charges on the surface of conductors [1]. In the case of attraction, would be rather a simultaneous action on each of the charged masses from the zero resulting electric potential: it is regarded as a "mini black hole" that would attract the masses of opposite charges to him.In this “black hole” EMW would act ensuring eV quantum levels compaction in compression. For the repulsion, phenomena are different: they ensure expansion pressure of relating potential quantum levels by giving the spacing of the charged masses. Examples of these processes are proposed for two identical and, two opposite charged masses.

Key words: quantic electrostatic interaction, fully quantic space-time, EVTD2 entities theory, quantic Substratum.


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References


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