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1)  Transverse electrical field component
横向电场分量
2)  transverse electric field
横向电场
1.
In this paper we apply an external transverse electric field on the two-dimension microchannel,and discuss the influence of the intensity of the transverse electric field,the arrangement of the micro electrode,and the zeta potential on the micromixing.
本文在一个二维微通道内施加横向电场,并讨论了不同横向电场强度、微电极对布置情况、壁面zeta电势等因素对微混合的影响。
3)  transverse component
横向分量
1.
This method works in the following procedure: ·Deduce the relation between autocorrelation function and crosscorrelation function of radial component and transverse component.
以往的快慢波分离方法在抗噪性、准确性等方面有诸多不足之处 ,本文从径向分量与横向分量的旋转分量出发 ,推出了自相关函数与互相关函数之间的关系 ,并据此建立了一个预测函数 ,通过扫描得到正确的偏振方位和分裂时差。
2.
The transverse component of magnetic flux intensity is pivotal that affect the utilization rate of target material and quality of deposition film as well as the instability of the sputtering process.
利用有限元理论对靶表面磁通量密度的横向分量进行了模拟分析。
4)  transversal vector field
横截向量场
1.
In this paper,we give a sufficient and necessary condition for the level surfaces with respect to non-degenerate quadratic functions by the usage of the Hessian metric and of a transversal vector field.
本文利用Hessian度量和横截向量场,给出了非退化二次函数的水平曲面的一个充要条件。
5)  Transverse field distribution
横向场分布
6)  Longitudinal components of electromagnetic fields
纵向电磁场分量
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