Internally electrodynamic particle model: Its experimental basis and its predictions

被引:0
|
作者
J. X. Zheng-Johansson
机构
[1] Institute of Fundamental Physics Research,
来源
Physics of Atomic Nuclei | 2010年 / 73卷
关键词
Electromagnetic Wave; Atomic Nucleus; Wave Train; Particle Model; Linear Momentum;
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摘要
The internally electrodynamic (IED) particle model was derived based on overall experimental observations, with the IED process itself being built directly on three experimental facts: (a) electric charges present with all material particles, (b) an accelerated charge generates electromagnetic waves according to Maxwell’s equations and Planck energy equation, and (c) source motion produces Doppler effect. A set of well-known basic particle equations and properties become predictable based on first principles solutions for the IED process; several key solutions achieved are outlined, including the de Broglie phase wave, de Broglie relations, Schrödinger equation, mass, Einstein mass-energy relation, Newton’s law of gravity, single particle self interference, and electromagnetic radiation and absorption; these equations and properties have long been broadly experimentally validated or demonstrated. A conditioned solution also predicts the Doebner-Goldin equation which emerges to represent a form of long-sought quantum wave equation including gravity. A critical review of the key experiments is given which suggests that the IED process underlies the basic particle equations and properties not just sufficiently but also necessarily.
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页码:571 / 581
页数:10
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