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Journal of Electrical Electronics Engineering(JEEE)

ISSN: 2834-4928 | DOI: 10.33140/JEEE

Impact Factor: 1.2

The Geometric and Interference Theory of Coulomb Forces: Phase Coupling and Gauging the Discrete Vacuum Bubble Substrate

Abstract

Arunas Ostasevicius

Physical forces are reinterpreted as localized holographic interference figures: single charges in a state of rest maintain spherical structural symmetry, whereas approaching like charges generate steep spatial compression “spikes” (+1) leading to repulsion, and opposite charges achieve a complementary “lock-and-key” phase locking forming an interference “hole” (-1) resulting in external hydrostatic attraction. Finally, the Compton effect is rigorously mapped not as particle scattering in a void, but as a non-elastic mechanical collision between a propagating autowave packet of micro-bubbles and the rotating boundary of a macro-bubble core, validating the structural perimeter of the electronic vortex without invoking Planck’s constant.

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