Electrical interaction of electron-proton tandem

Vasyl Tchaban
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引用次数: 1

Abstract

Based on the adapted Coulomb's law for the case of moving masses, taking into account the finite velocity of electric field propagation, differential equations of the electromechanical state of the electron-proton tandem are obtained. The real states are simulated, as well as a number of unreal transition states of electron capture by a proton into its own orbit. Cont­rary to the prohibitions of quantum physics in the field of microworld, the mathematical concept of an electro­me­chanical black hole with a radius m similar to that taking place in celestial mecha­nics has been introduced. The transients indicating the collapse of the laws of electricity and mechanics at distances r(t) < rem are simulated. A discussion has been started on this issue.
电子-质子串联的电相互作用
基于运动质量情况下的库仑定律,考虑电场传播速度有限,得到了电子-质子串联机电态的微分方程。模拟了真实的状态,以及质子捕获电子进入自己轨道的一些不真实的过渡状态。与量子物理学在微观世界领域的限制相反,引入了与天体力学类似的半径为m的电-机电黑洞的数学概念。模拟了电学和力学定律在距离r(t) < rem处崩溃的瞬态。关于这个问题的讨论已经开始了。
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