1) moving medium
运动媒质
1.
Pou r-dimensional covariant form of the constitutive relationship in moving mediumwas given by using the electromagnetic field tensor,and four-dimensional covariant form of electro-magnetic potential was given from the electro-magnetic field equation.
借助电磁场张量将运动媒质本构关系表成四维协变形式。
2.
Solving the Green s functions of electromagnetic potential equations in moving medium,the retarded potentials in unlimited space are obtained.
求解了运动媒质中电磁势方程的格林函数,给出了无界空间的推迟势。
2) Linear motion media
直线运动媒质
3) Moving boundary surface between media
运动媒质分界面
4) movement of media elements
媒质的运动状态
1.
The movement of media elements can be analyzed according to the varying of density of media when the longitudinal wave is propagating through it.
根据媒质疏密程度来分析纵波传播时媒质的运动状态 ,并通过媒质间相互作用力与媒质运动状态的关系 ,证明媒质单位面积相互作用力的功率等于能流密度 。
5) moving media interface
运动媒质界面
1.
The electromagnetic properties of the moving media interface in a high frequency range is analysed and the dependence of generalized refraction on frequency is obtained based on special relativity.
在狭义相对论的基础上,对运动媒质界面的高频电磁特性进行了分析,给出了广义折射以及频率的特性关系。
6) medium transfer
媒质输运
补充资料:运动媒质中的波
见运动媒质声学。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条