由此,绘制了整个场域的等位线和电场强度矢量分布。
Then, isopotential and electric field intensity lines are plotted.
给出了等位线图和流线图,表明低电导率对电位分布和电流流向的影响不可忽视。
Electric potential contour and current streamline figures show that it is important to consider the effect of the low conductivity of skull on electric potential and current flow.
本文利用等位线导出了截面由圆和正N 边形组成的同轴线特性阻抗的严格计算公式。
By means of Cauipotential lines, exact formulas for calculating the characteristic impedance of the coaxial systems consisting of a circle and a N- resular polygon are derived in this paper.
本文通过保角变换研究了垂直带状线中等位线的特性,结果表明其中有一根非常近似于圆的等位线。
The characteristic impedance of unscreened slab-line is obtained, based on the investigation of the properties of the equipotential line in vertical stripline.
研究表明:改进的等位线反投影算法不但可以较准确地对场域内目标进行定位,而且具有一定的分辨率;
The research results show that back projection algorithm can not only accurately determine the location of target, but also have good resolution.
方法:利用曲线拟合方法模拟大脑外形曲线,借助有限元方法和等位线反投影算法完成脑eit仿真成像。
A curve of a real brain shape is simulated with the curve-fitting methods and EIT in the brain is finished with finite-element methods and Equipotential Lines Back-Projection algorithm.
开发的软件包对不同的应力锥形状下的场强采用有限元方法进行计算并提供以下功能:画出任意电位的等位线;
This software package can calculate electric field in different stress cone shape by finite element method, and can present following functions: drawing equipotential line;
基于莫尔效应,本文提出了一种利用白光面光源进行双编码栅反向投影,以等位线条纹的形式测量物体相位变化的新方法。
Based on the Moire effect in shadow-casting of two coded masks a new kind of optical method is proposed to map phase variation on the object image with an extended incoherent illumination.
利用保角变换,首先在二维平面得到双曲线型的等位线簇方程,然后过渡到三维空间,从而得到表面为单叶双曲面(两实半轴相等)的带电导体的等位面簇方程。
Transition to the three-dimensional space, then we obtain the equation of equipotential surface families of charged conductor with surface of hyperboloid of one sheet.
利用保角变换,首先在二维平面得到双曲线型的等位线簇方程,然后过渡到三维空间,从而得到表面为单叶双曲面(两实半轴相等)的带电导体的等位面簇方程。
Transition to the three-dimensional space, then we obtain the equation of equipotential surface families of charged conductor with surface of hyperboloid of one sheet.
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