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A derivation of Maxwell's equations using the Heaviside notation

机译:使用沉重含义的Maxwell等式的推导

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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.
机译:Maxwell的四种微分方程描述了电磁体是科学中最着名的方程之一。 Feynman表示,他们提供了四个古典物理学法律。在本文中,我们使用熟悉的方法来派生Maxwell的等式,用于从静态法律中推导时间依赖的微分方程。衍生使用标准的沉重符号。它假设收费守恒,并且库仑的静电方法和安培的磁静磁定律既正确就像描述了局部系统时都是正确的。假设质量守恒,牛顿第二次运动规律的守恒,类似于局部均衡的系统的静态弹性静态静态的静态运动。这项工作表明,它是保护时间不同的电子领域和B字段的收费,并且可以导出法拉德的法律而没有关于Lorentz Invariance的任何相对论的假设。它还扩大了公理或起点,以了解电磁。

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