Relative Nature of Electric Permittivity and Magnetic Permeability of Electromagnetic Wave

C. B. Khadka
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引用次数: 4

Abstract

This research is about the special theory of relativity on electric permittivity and magnetic permeability of electromagnetic wave. For this, Four Maxwell's electromagnetic equations play an important role. James Clerk Maxwell suggested that the light travel as electromagnetic wave which require no material medium for propagation. The speed of light (C) in free space is always constant and is independent of the speed of source or observer or the relative motion of the inertial system and has velocity 'C' given by . So velocity of electromagnetic waves depend on obsolute magnetic permeability and obsolute electric permittivity of free space. These two physical quantities rely on relative motion of inertial system. So are not obsolute quantity but are dependent upon the relative motion between the observer and the phenomenon observed. Electric and magnetic field of a charge rely upon the value of obsolute electric permittivity of medium. Concisely, are variant quantity. Consequently electric and magnetic field get relative for electromagnetic wave. That is electric and magnetic field depend on relative motion of inertial system for electromagnetic waves.
电磁波的介电常数与磁导率的相对性质
本研究是关于电磁波的介电常数和磁导率的狭义相对论。为此,四个麦克斯韦电磁方程起着重要作用。麦克斯韦提出光以电磁波的形式传播,不需要物质介质。自由空间中的光速(C)总是恒定的,与源或观察者的速度或惯性系统的相对运动无关,其速度C由。所以电磁波的速度取决于自由空间的陈旧磁导率和陈旧介电常数。这两个物理量依赖于惯性系的相对运动。它们不是过时的量,而是取决于观察者和被观察现象之间的相对运动。电荷的电场和磁场取决于介质的旧介电常数的值。简而言之,是变量。因此对电磁波而言,电场和磁场是相对的。也就是说,电磁波的电场和磁场取决于惯性系的相对运动。
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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