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Modification of the Lorentz forces law invariant under Galilean transformations

机译:在加里利亚尔转换下的洛伦兹军队不变的修改

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It in generally expected from intuition that the electromagnetic force exerted on a charged particle should be invariant an observed in different inertial frames. In the special relativity, thin invariance is achieved by invoking the Lorentz transformation of space and time. In this investigation, an entirely different interpretation of this force invariance in presented by proposing a Galilean-invariant model of the electromagnetic force. In this new classical model, the electromagnetic force in expressed in terms of the augmented scalar potential. This new potential is a modification of the electric scalar potential by incorporating an ordinarily small velocity-dependent part. Each of the position vectors, time derivatives, sod velocities involved in the proposed force law is referred specifically to a respective reference frame. By virtue of thin feature, the electromagnetic force is endowed with the unique property of Galilean invariance. The velocity-dependent parts of the proposed force look quite different from their counterparts in the Lorentz force. However, under the common low-speed condition where the source particles forming the current drift very slowly in a matrix, the proposed Galilean-invariant model reduces to the Lorentz force law, if the latter is observed in the matrix frame an done in common practice.
机译:它通常预期从直觉中施加在带电粒子上的电磁力应该是在不同惯性框架中观察到的不变性。在特殊的相关性中,通过调用空间和时间的Lorentz转换来实现瘦的不变性。在这项调查中,通过提出电磁力的加利利不可变的模型,对这种力不变性的完全不同的解释。在这种新的经典模型中,在增强标量电位方面表达的电磁力。这种新潜力是通过结合通常的小速度依赖性部分来修改电标量电位。每个位置向量,时间衍生物,所涉及所涉及的施加力定律的SOD速度特定于相应的参考框架。凭借薄的特征,电磁力赋予了Galilan Invariance的独特性。所提出的力的速度依赖性部分看起来与洛伦兹力的对应物完全不同。然而,在常见的低速条件下,在矩阵中形成电流颗粒的源粒子非常缓慢地漂移的低速状态下,如果在常见实践中的矩阵框架中观察到后者,所提出的Galilan-Funiant模型将减少到洛伦兹力法。

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