Solomon I. Khmelnik
In this paper, a mathematical model proposing a new understanding of electric charge as a solution to Maxwell's equations is presented. The primary objective is to elucidate the behavior of electric charges, including their ability to exist independently of carriers while also being transported by carriers such as electrons. Employing a theoretical framework rooted in Maxwell's equations, the study derives relationships that illustrate how electric tension, guided by Coulomb's law, pertains to electric charge. The findings indicate that electric current, defined as a flow of charges rather than electrons, diminishes as it propagates through a medium. Analogies are drawn between electric charge and energy, where it is demonstrated that both can exhibit independence from carriers in their respective flows. Overall, the model advances the understanding of electric charge, emphasizing its immaterial nature akin to energy, with implications for further research in electrodynamics. The work invites scrutiny and exploration into the foundational principles of charge movement and its representation in theoretical physics.
@article{344666ca-f9e1-41db-9d76-41d158559d78,
title={Electric charge structure},
author={Solomon I. Khmelnik},
year={2024},
language={en}
}TY - JOUR TI - Electric charge structure AU - Solomon I. Khmelnik PY - 2024 LA - en ER -
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