1) rest color electric field
静色电场
1.
Using the Debye screened in QGP,the distribution function and the color electric potential of the quark at the high temperature, the fluctuation of the rest color electric field of the quark in QGP are obtained.
利用QGP中存在德拜屏蔽现象以及高温极限下QGP中夸克的分布函数和色电势,得到QGP中夸克静色电场的起伏,讨论了夸克静色电场起伏的能量与德拜长度λD的关系以及不同λD范围内夸克静色电波的激发水
2) ectrostatic field
静电场;静电场
3) electrostatic field
静电场
1.
Perturbation method for the problems of the electrostatic field;
静电场问题中的微扰方法
2.
Solving two-dimensional unbounded electrostatic field with ANSYS;
二维开域静电场的ANSYS解法
3.
Solving axially symmetrical electrostatic field in cylindrical coordinates;
在柱坐标系中求解轴对称的静电场
4) static electric field
静电场
1.
Vector potential of static electric field;
静电场矢势物理特性研究
2.
Effects of static electric field on high-order harmonic generation of hydrogen atom in intense laser field;
静电场对强激光场中氢原子产生高次谐波的影响
3.
The effect of static electric field on nonsequential double ionization;
静电场对强激光场非序列双电子电离的影响
5) electrostatic force
静电场力
1.
The process relies heavily on the electrostatic force produced by the depletion region, and a model is built to analyze the dominant factor of the electrostatic force.
连接的过程与由耗尽层产生的静电场力有紧密关系,通过建立的模型分析了电场力产生的原因。
2.
The two-dimensional three-stage microbeam model subject to the electrostatic force is used to analyze effects of some factors on tunable-range of MEMS voltage-controlled capacitor.
采用静电场力作用下二维三阶段微梁的静力分析模型,分析了影响两侧下拉电极MEMS压控电容可控范围的因素,这些因素包括:驱动电极的位置、电容极板的初始间隙、电容极板长度、介质层的厚度、介质的介电常数等,通过分析可以了解各因素对MEMS压控电容性能的影响以及这些因素之间的一些相互制约关系。
3.
A novel electromechanical integrated drive system actuated by electrostatic force was proposed,the basic operating principle of which was also described.
用Fourier级数形式表示了静电场力的动态分量和3个模态函数,在Donnell壳理论的基础上建立了电场力作用下系统的动力学模型。
6) electrostatic fields
静电场
1.
The authors present a pressure distribution and a surface elevation formula of dielectric liquids in electrostatic fields.
给出静电场和重力场共同作用下介电液体内的压强分布式以及液面高度表达式,并讨论了两个具体问题:用两个平行平板电极间的液面上升高度推求液体的介电常数;分析了Sumoto效应的成因,并给出其中的液面攀升高度的计算式。
2.
This paper analyzes the cause of frictional electricity in gas-solid particle flow by usingthe theories of electrostatic fields and fluid mechanics and presents the formula for calculating the current density in electric circuits.
运用静电场和流体动力学的基础理论,分析了气体-固体位子流动系统摩擦起电的机理,并导出了电路中的起电电流密度的表达式。
补充资料:静虑律仪无表色
【静虑律仪无表色】
(术语)(参见:无表色)附录。
(术语)(参见:无表色)附录。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条