Aberration of Electric Field and Motion of an Electron

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Abstract

Aberration of electric field is a missing link in physics, which necessitated the concept of special relativity and quantum mechanics, to describe some physical phenomenon. An electron of mass m and charge –e moving with velocity v at angle θ to an electric field E, is subject to aberration of electrid field, as a result of relativity of velocity between the electrical force, transmitted with velodity of light c, and the electron moving with velocity v. Accelerating force, at time t, in accordance with Coulomb’s law and Newton’s second law of motion, put as F = -(eE/c)(c – v) = m(dv/dt), is less than the electrostatic foce -eE, the difference is radiation reaction force. At the velocity of light v = c, the force F becomes zero and the electron continues to move with speed c as an ultimate limit. Motion of the electron with constant mass m and its radiation power are treated under acceleration with θ = 0 or deceleration with θ = � radians or at constant speed v, in a circle of radiua r, with θ =�/2 radians. It is shown that circular motion of an electron round a central force of attraction, as in the Rutherford’s nuclear model of the hydrogen atom, is inherently stable. There is no need of special relativisty for the speed of light to become a limit and quantum mechanics is not necessary in explaining emission of radiation from accelerated charged particles.
电场畸变与电子运动
电场畸变是物理学中的一个缺失环节,它需要狭义相对论和量子力学的概念来描述一些物理现象。电子的质量和电荷与速度v - E移动角θ电场E,受制于electrid场的畸变,由于相对论电子之间的速度力量,光的传播与velodity c,和电子移动速度v .加速力量,在时间t,根据库仑定律和牛顿第二运动定律,把F =——(eE / c) (c - v) = m (dv / dt),小于静电foce eE,差是辐射反作用力。在光速v = c时,力F变为零,电子继续以速度c作为极限运动。对质量为m的电子在加速θ = 0或减速θ = 0弧度或匀速v下,在半径为r的圆上运动,θ = 1 /2弧度。结果表明,电子围绕中心引力的圆周运动,如卢瑟福的氢原子核模型,是固有稳定的。要使光速成为极限,不需要狭义相对论,也不需要量子力学来解释加速带电粒子的辐射。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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