electromagnetic tensor
- 网络电磁张量
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Magnetic field and electric field is described by unified electromagnetic tensor .
电场和磁场可以用统一的电磁张量来描述。
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Firstly , the electromagnetic tensor is proved to be covariant tensor with four-dimension . And two differentiation equations of Maxwell are proved to be covariant equations with four-dimension .
先证明电磁张量是一个四维协变张量,2个麦克斯韦微分方程是四维协变方程;
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On the other hand , considering that electric field and magnetic field are different quantity in electromagnetic tensor , we think there exits a kind of coordinate-transformation : energy-velocity existing in old coordinate but not in the new coordinate .
另一方面,考虑到电场和磁场是电磁张量的不同分量,认为存在这样一种坐标变换:即原坐标系中有能量速度,而在新坐标系中无能量速度。
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The electric and magnetic fields have been amalgamated into electromagnetic field tensor .
电场和磁场合并为电磁场张量。
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Maxwell Electromagnetic Stress Tensor and Electromagnetic Solid Dynamics
麦克斯韦电磁应力张量和电磁固体耦合动力学
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The electromagnetic field tensor for the source of field possessing both electric and magnetic charges in general relativity
广义相对论中双荷场源的电磁场张量
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In this paper , the problem of electromagnetic stress tensor of the oblate spheroidal conductor in an electric field is studied .
本文研究电、磁场作用于扁球导体、磁导体上的力矩。
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Two Four-vector Potential and Electromagnetic Field Strength Tensor Constructed by Them
双四维矢势及用其构造的电磁场张量
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Electromagnetic Field Energy Momentum Tensor in External Region of Charged Spherical Symmetric Mass
荷电球对称质量外部区域的电磁场总能量
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Analysis Electromagnetic Force by Electromagnetic Tensor
基于电磁场张力张量的电磁力分析