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1)  S-effect
S效应,表面电荷效应
2)  surface charge effect
表面电荷效应
3)  Charging effect
荷电效应
1.
Evaluation of charging effect on the non-conductive specimens by absorbe current measurement;
非导电样品荷电效应的吸收电流评价方法
2.
It has been observed that serious charging effect occurred which caused the ion beam to be deflected for the electrically insulated sample 2, and the charging effect could be eliminated by using electron flood gun.
观察到荷电效应对ISS分析有严重影响 。
3.
The characteristic peak of three elements of Ar, contamination carbon and deposited monolayer Au were considered as reference peak to correct the shift of the XPS spectra caused by charging effect during the XPS analysis process, and the results of XPS and FTIR analyses were compared to estimate the correctness of this method.
分别采用氩峰、污染碳和沉积单层金3种元素峰位来校正在XPS测试过程中由荷电效应引起的峰位移动,并与傅立叶红外光谱(FTIR)进行比较,讨论了这3种校正荷电效应的元素峰位选取对正确表征BCN膜结构的影响。
4)  charge effect
电荷效应
5)  surface effect
表面效应
1.
Curie temperature and surface effects of ultre-thin ferroelectric films(Ⅱ);
超薄铁电膜的居里温度及表面效应(续)
2.
One dimension surface effect mechanism analysis for metal drawing deformation with pulse vibration
金属脉冲振动拉拔成形一维表面效应机理分析
3.
The nano-bar is affected by the strong surface effect and small size effect.
模拟了SiC在驰豫过程中的动态平衡变化过程,研究了表面效应和小尺寸效应对原子位置,原子能量分布的影响。
6)  surface effects
表面效应
1.
The goal of this dissertation is to(?)evelop macro-micro numerical models for understanding contact mechanics characteristicsvith some complicated factors such as surface topography of real rough surfaces,elasto-plastic behaviors, frictional heating, surface effects on micro-scale, etc.
本文运用近年来发展的在计算区域划分及结点排布上较为灵活的无网格方法(Meshless Methods或Meshfree Methods),通过采用较有效的表面形貌的描述方法,研究了表面粗糙度、弹塑性变形、摩擦热和表面效应等因素影响下的宏观—微观接触机理,建立了一套较有效解决以上问题的数值计算方法。
2.
On the otlier hand,they offer someunique properties due to finite size effects and surface effectscompared with bulk materials.
同大块材料相比,由于颗粒尺寸的减小,颗粒具有明显的小尺寸效应与表面效应。
补充资料:荷电粒子与非荷电粒子
分子式:
CAS号:

性质:荷电粒子带电,包括电子、正电子、带电介子、质子或其他离子;非荷电粒子不带电,包括X射线、γ射线和中子。荷电粒子和非荷电粒子都可以是致电离辐射但电离方式略有不同。

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