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1)  depletion potential
耗尽势
1.
The depletion potential of charged colloidal system is studied by the Monte Carlo method through the Acceptance Ratio method, and the depletion force can then be calculated by numerical differentiation of the depletion potential.
 用MonteCarlo方法模拟了带电胶球系统,采用接受率方法获得该体系的耗尽势,再对耗尽势取数值微分得到耗尽力,通过对耗尽力与库仑力的对比分析,初步建立起在两带电大胶球比较靠近范围内耗尽力仍起明显作用的带电胶球模型。
2)  depletion [英][di'pli:ʃən]  [美][dɪ'pliʃən]
耗尽
3)  depletion [英][di'pli:ʃən]  [美][dɪ'pliʃən]
消耗;耗尽
4)  depletion layer
耗尽层
1.
Proposed a model of the thin depletion layer which runs through the whole samples,and on the basis of this model the author explained the switching phenomena of the electrical conductivity of certain kinds of the Cu2O single crystal samples.
试验表明,跃变发生的温度随样品而异,提高电压时,样品的电导率会跃变到一个较高的数值,为了解释这种跃变现象,作者认为CU2O单晶的样品中存在有贯穿整个样品的耗尽层的模型。
2.
Under the assumption that only one kind of positive ion (Na +, for instance ) in glass is movable and negative ions only appear at the edge of the Na depletion layer, the relation of the depth of the depletion layer and bonding time during the anodic bonding of glass to Kovar alloy is obtained.
在假设玻璃中只有一种正离子 (Na+离子 )可移动 ,Na耗尽层中负离子仅出现在耗尽层边的情况下 ,根据电学方程得出玻璃—Kovar合金阳极连接中耗尽层厚度变化与连接时间的关
5)  effect of depletion
耗尽作用
1.
It was found that in all situations studied here the effect of depletion is attractive when the two colloid spheres close to each other, the attraction depresses the repulsion of charged colloid spheres and gives a net attraction to hard spheres.
用积分方程方法计算了二分量带电胶体悬浮系统的等效相互作用 ,研究了耗尽作用的影响 。
6)  depletion region
耗尽区
1.
It shows that the second order susceptibility is established by both the orientations of dipoles and third order susceptibility activated by strong static electric field in the depletion region of the sample.
该机理表明 ,二阶极化率是由样品耗尽区中偶极子的定向和三阶极化率经强静电场作用共同形成的。
2.
Under the approximation of the full depletion, the calculating formulas for the width and electrical field of depletion region are obtained.
提出了热及电场诱导的多载流子模型 ,在完全耗尽近似下 ,得出了耗尽区厚度和电场强度的计算公式。
补充资料:村村势势
1.犹言土头土脑。
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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