【2h】

A derivation of Maxwells equations using the Heaviside notation

机译:使用Heaviside表示法对麦克斯韦方程组的推导

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摘要

Maxwell's four differential equations describing electromagnetism are among the most famous equations in science. Feynman said that they provide four of the seven fundamental laws of classical physics. In this paper, we derive Maxwell's equations using a well-established approach for deriving time-dependent differential equations from static laws. The derivation uses the standard Heaviside notation. It assumes conservation of charge and that Coulomb's law of electrostatics and Ampere's law of magnetostatics are both correct as a function of time when they are limited to describing a local system. It is analogous to deriving the differential equation of motion for sound, assuming conservation of mass, Newton's second law of motion and that Hooke's static law of elasticity holds for a system in local equilibrium. This work demonstrates that it is the conservation of charge that couples time-varying >E-fields and >B-fields and that Faraday's Law can be derived without any relativistic assumptions about Lorentz invariance. It also widens the choice of axioms, or starting points, for understanding electromagnetism.This article is part of the theme issue ‘Celebrating 125 years of Oliver Heaviside's ‘Electromagnetic Theory’’.
机译:麦克斯韦描述电磁的四个微分方程是科学界最著名的方程之一。费曼说,它们提供了古典物理学的七个基本定律中的四个定律。在本文中,我们使用成熟的方法从静态定律推导时间相关的微分方程,从而得出麦克斯韦方程。派生使用标准的Heaviside表示法。它假设电荷守恒,并且当它们仅限于描述局部系统时,库仑的静电定律和安培的静磁定律都是随时间变化的正确函数。它类似于推导声音运动的微分方程,假定质量守恒,牛顿第二运动定律,并且胡克的静态弹性定律适用于局部平衡系统。这项工作表明,电荷守恒结合了随时间变化的> E 字段和> B 字段,并且可以得出法拉第定律,而无需任何关于洛伦兹不变性的相对论假设。它还拓宽了理解电磁学的公理或起点的选择。本文是“庆祝奥利弗·海维赛德(Oliver Heaviside)的125年”电磁理论”主题主题的一部分。

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