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1)  electric potential
电势
1.
The electric potential and charge distribution of a charged ellipsoidal conductor;
带电导体椭球的电势和电荷分布
2.
Different methods of calculating the electric potential of a uniformly charged ring;
圆环电荷的电势的几种算法及讨论
3.
The discussion of electric potential reference point from some feign mistakes;
从几个佯谬问题所引起关于电势参考零点的讨论
2)  potential [英][pə'tenʃl]  [美][pə'tɛnʃəl]
电势
1.
The Electril Field and the Potential Distrikution in the Plane of Ring for An Even Charge Ring;
均匀带电圆环环平面内的电场、电势分布
2.
The electric field potential and intensity of an electric disk conductor;
带电圆盘导体电场的电势和场强
3.
Calculation and discussion of the potential of a system for a point charge and a dielectric sphere;
点电荷与介质球系统电势的计算和讨论
3)  electric field
电势
1.
The new solution of an electric potential and an electric field distributions for a charged electric conduct ring.
研究带电椭圆环导体的电势和电场分布。
2.
In the rectangular coordinate system, we express the electric field intensity and different position electric field energy of the elliptical ring with positive electric charge in the central axis.
在直角坐标系中分别表示出了均匀带电椭圆形环在中心轴线上任意位置处的电势及电场。
4)  electrokinetic potential (ζpotential)
电动电势(ζ电势)
5)  Electrode potential
电极电势
1.
The discussion of some questions on electrode potential;
关于电极电势几个问题的讨论
2.
Oxidation reduction electro-dynamic potential was measured for ISS de-sulfur catalyst solution using Nenrst equation,electrode potential—pH curve(φ—pH Curve) of de-sulfur solution was drawn,which showed max.
应用NENRST方程测定了ISS脱硫催化剂溶液的氧化还原电动势,绘制了脱硫溶液的电极电势—PH曲线(Φ—PH曲线)。
3.
Using the generalizd electrode potentials,the conditions for generalized oxidation and reduction titration are concluded.
以广义氧化还原电极电势作依据,归纳酸碱滴定、配位滴定、沉淀滴定及氧化还原滴定的可行性条件。
6)  potential [英][pə'tenʃl]  [美][pə'tɛnʃəl]
电弧电势
1.
Numerical simulation of profiles of potential,current density and electromagnetic force in GTAW-arc;
GTAW电弧电势、电流密度和电磁力的数值模拟
补充资料:电势
电势
electric potential

   描述静电场特性的基本物理量之一,标量。库仑定律指出,两静止点电荷之间的相互作用力是有心力,其方向沿两者的连线,其大小只依赖于两者的距离。根据库仑定律和场强叠加原理可以证明,静电力对试验电荷所作的功与路径无关 ,仅由起点、终点的位置确定。若试验电荷在静电场中沿闭合路径移动一周,则静电力对它所作的功为零,这就是静电场的环路定理。它表明静电场是保守场或势场,存在着一个可以用来描述静电场特性的、只与位置有关的标量函数——电势。
   功量度了能量的变化。设一电量为q0的试验点电荷在静电场中从 P点移动到Q点时,静电力作功A,则相应的能量变化定义为P、Q两点的电势能之差WPWQ,即

    
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