Quantum Movement Theory of Alternating Current

Cooper R. Wade, Olusegun S. Tomomewo
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Abstract

The most common way to evaluate the flow of electricity in a wire is via a load flow analysis, however; there is another way to view this behavior utilizing the Quantum Movement Theory proposed and discussed herein. This theory evaluates the movement of the charge carrier, the electron, within a conductor to register a specific amount of current in an alternating current system. Historically, the understanding of electricity flow on the electric grid has been based upon the previously popular direct current system of the 1880’s. This research evaluates how electrons as both a particle and a wave move through conductors on the interconnected grid. Two mathematical applications comprising the; 1) volume of electrons moving in a conductor, and 2) the distance traveled by electrons in a conductor, are developed and explained within this article. The application of the equations and understandings contained herein can be applied to quantum mechanics within conductors on the modern electric grid comprised of alternating current equipment, as well as policy regulating such resources.
交流电的量子运动理论
然而,评估电线中电流的最常见方法是通过负载流分析;有另一种方法来看待这种行为利用量子运动理论提出和讨论在这里。该理论评估了电荷载体电子在导体内的运动,以记录交流系统中特定数量的电流。从历史上看,对电网上电流流动的理解是基于19世纪80年代以前流行的直流系统。这项研究评估了电子作为粒子和波如何在相互连接的网格上通过导体。两个数学应用,包括;1)电子在导体中移动的体积,2)电子在导体中移动的距离,在本文中进行了发展和解释。本文所包含的方程和理解的应用可以应用于由交流设备组成的现代电网导体中的量子力学,以及调节这些资源的政策。
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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