1) photo-induced voltage
光生电动势
1.
The photo-induced voltage between the back etching and edge etching silicon were compared, explaining the difference by means of the theory of energy bands.
采用正面无保护的背腐蚀方法分离p-n结,用SEM图观察了背腐蚀后硅片表面形貌的变化,对背腐蚀与刻边分离p-n结样品的光生电动势进行了比较,用能带理论对其差别做了深入的解释。
2) optovoltage
光生电势
3) photoelectromotive foree
光电动势
4) photo electromotive force
光电电动势
5) Motional Electromotive Force
动生电动势
1.
The relativity between induced electromotive force and motional electromotive force;
感生电动势与动生电动势的相对性
2.
A derivation on the formulation of motional electromotive force;
动生电动势公式的普适推导
3.
The relativity of motional electromotive force;
也谈动生电动势的相对性
6) Induced Electromotive Force
感生电动势
1.
The relativity between induced electromotive force and motional electromotive force;
感生电动势与动生电动势的相对性
2.
Computing method of induced electromotive force;
一种感生电动势的计算方法
3.
The paper also proves and discusses the equality and the relativity about the two kinds of expression of it,and points out the different on the physics substance between induced electromotive force and motional electromotive force.
根据法拉第电磁感应定律,说明对感应电动势两种表述的理解和这两种表述的地位,证明并讨论了感应电动势两种表述的等价性和相对性问题,指出感生电动势与动生电动势不同的物理实质。
补充资料:动生电动势
动生电动势 motional electromotive force 组成回路的导体(整体或局部)在恒定磁场中运动,使回路中磁通量发生变化而产生的感应电动势。动生电动势来源于磁场对运动导体中带电粒子的洛伦兹力。由洛伦兹力公式 f =qv×B,当导体中的带电粒子在恒定磁场B中以速度v运动时,单位正电荷所受洛伦兹力为v×B,此即引起动生电动势的非静电力。根据电动势的定义,在运动的导体回路中的动生电动势为 说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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