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Fundamentals of Potential Electrodynamics

Yu.A. Spirichev

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Abstract

Work is devoted to the development of the classical theory of the electromagnetic field (EMF). Of a single axiom of the existence in nature of the electromagnetic field vector potential deductively constructed the foundations of a coherent and consistent potential electrodynamics. New electrodynamics includes new stress tensor and the equations of motion EMF, tensor and 4 kinds of electromagnetic energy, conservation equations of the electromagnetic energy, tensor and the expression for 20 kinds of dynamic and stationary electromagnetic forces, tensors and equations of motion of charged particles, including the equation of plasma turbulence. An expression for the electromagnetic mass and the relation between EMF with the conservation laws of mechanics.

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What this paper is about

Work is devoted to the development of the classical theory of the electromagnetic field (EMF). Of a single axiom of the existence in nature of the electromagnetic field vector potential deductively constructed the foundations of a coherent and consistent potential electrodynamics. New electrodynamics includes new stress tensor and the equations of motion EMF, tensor and 4 kinds of electromagnetic energy, conservation equations of the electromagnetic energy, tensor and the expression for 20 kinds of dynamic and stationary electromagnetic forces, tensors and equations of motion of charged particles, including the equation of plasma turbulence. An expression for the electromagnetic mass and the relation between EMF with the conservation laws of mechanics.

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Available abstract

Work is devoted to the development of the classical theory of the electromagnetic field (EMF). Of a single axiom of the existence in nature of the electromagnetic field vector potential deductively constructed the foundations of a coherent and consistent potential electrodynamics. New electrodynamics includes new stress tensor and the equations of motion EMF, tensor and 4 kinds of electromagnetic energy, conservation equations of the electromagnetic energy, tensor and the expression for 20 kinds of dynamic and stationary electromagnetic forces, tensors and equations of motion of charged particles, including the equation of plasma turbulence. An expression for the electromagnetic mass and the relation between EMF with the conservation laws of mechanics.

Key concepts: Electromagnetic tensor, Physics, Electromagnetic field, Classical electromagnetism, Classical mechanics, Maxwell stress tensor, Inhomogeneous electromagnetic wave equation, Quantum electrodynamics

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