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1)  photocurrent density
光电流密度
1.
On the basis of mathematical model of silicon solar cells with P-N junction,the photocurrent density of silicon solar cells was numerically simulated by means of MATLAB,the absolute spectrum response curves of silicon solar cells were obtained,and the method of classified variation and comparison of parameters was used to analyze the relation between device parameters and photocurrent density.
在P-N结硅太阳能电池数学模型的基础上,利用Matlab语言对硅太阳能电池的光电流密度进行了数值模拟,得到了P-N结硅太阳能电池的绝对光谱响应曲线,并采用参数分类变化和比较的方法,对硅片的器件参数和光电流密度之间的关系进行了数值分析,得出了太阳能电池光电流密度与硅片参数之间的相互关系,找出了可以提高光电流密度的方法,实验结论在具体的工艺实践中具有指导意义。
2)  bright electroplating current density range
光亮电流密度
3)  current density
电流密度
1.
Effect of current density on performances of deposit in low-temperature iron plating process;
低温镀铁时电流密度对镀层性能的影响
2.
Research and application on current density of ion exchange membrane electrolyzer;
离子膜电槽电流密度的研究及应用
3.
Effects of anode current density on micro-arc oxidation ceramic coating of aluminum alloy;
阳极电流密度对铝合金微弧氧化陶瓷膜的影响
4)  electrical current density
电流密度
1.
The influences of electrical current density of Joule heating treatment on GMI effects of amorphous Co_(68.
本文研究了焦耳处理工艺的处理电流密度对Co68。
5)  Electric current density
电流密度
1.
The electric current density fields superposition principle and its applications;
电流密度场叠加原理及其应用
2.
The relation between electric current density and electric current efficiency and the optimum conditions, i.
通过实验获得了三槽隔膜式离子水设备制取弱碱性水的电极距离、电压、盐水浓度等影响因素的最佳参数,以及电流密度与电流效率的关系。
3.
The performance comparison tests of sacrificing anodes of zinc alloy, common magnesium alloy and high electric potential magnesium alloy in the standard liquid of simulated soil media show that, with increasing electric current density, the open-circuit potential and working potential of three anodes will gradually become positive and electric current efficiency will become increasingly greater.
锌合金、普通镁合金和高负电位镁合金牺牲阳极在模拟土壤介质的标准溶液中进行电化学性能对比试验 ,表明 :随着电流密度的增加 ,三种阳极的开路电位、工作电位逐渐变正 ,电流效率增大。
6)  bright current density range
光亮电流密度范围
补充资料:光电流
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性质:(1)当光照射半导体时,光生电子在空间电荷层电场作用下,移向电极表面,与溶液中的氧化剂或还原剂进行电极反应,在半导体电极和对应电极之间的闭合回路中产生的电流。(2)在光的照射下,电解液中的激发态氧化剂或还原剂在电极(包括金属、半导体电极)/电解液界面进行电极反应,在工作电极和对应电极之间的闭合回路中产生的电流。

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