2) potential and electric field distributions
电位和电场分布
3) field distribution
电场分布
1.
The field distribution is the main factor that can affect the characteristics of electro-optic devices.
电场分布是影响电光器件特性的主要因素。
2.
The field distribution was the main factor that can affect the characteristics of electro-optic devices.
电场分布是影响集成电光器件特性的主要因素。
3.
This paper discusses the field distribution across discharge channels of dart leaders, connecting leaders and return strokes when they propagate themselves.
从雷电自行传播的跳跃式先驱放电、连接性先导闪击和回击等物理过程出发,初步探讨了放电通道电场分布的规律。
4) electric field
电场分布
1.
Study on calculating electric field of composite insulator;
110kV合成绝缘子沿面电场分布的研究
2.
Thus, the characteristic impedance can be calculated and electric field obtained in terms of a potential function.
由此计算出电场分布 ,并绘出等值线及均匀区分布 。
5) electric field distribution
电场分布
1.
Investigation of electric field distribution rule in Al-5%Cu melt under electric pulse;
电脉冲作用下Al-5%Cu熔体内电场分布规律
2.
Computation and analysis of electric field distribution in one-dimensional gratings;
一维光栅结构中电场分布的计算分析
3.
Simulation Research on Electric Field Distribution In Bounded-Wave Simulator;
有界波模拟器内部电场分布仿真研究
6) electric-field distribution
电场分布
1.
The electric-field distribution in LiNbO_3 with double-sided electrodes and its application:voltage-controlled half-wave plate;
双面电极下铌酸锂晶体中的电场分布及其应用——电控λ/2波片
2.
Objective To explore an integrated solution method to model and simulate electric-field distribution under transthoracic defibrillation and promote the pertinent clinical research based on bioelectric field theory.
目的探讨求解体外除颤时胸腔电场分布的集成仿真分析方法,为生物电场理论的临床应用研究提供参考。
3.
During the electrodes buryied beneath the shallow earth surface were supplied with direct current, the electric-field distribution in anisotropic earth crust could be calculated by applying image method and electrostatic analogue method in electromagnetics.
以垂直于介质主轴方向的平面作为两种介质的分界面研究,对埋在较浅地表中的直流电极,以及其向大地供电而引起的各向异性地壳中的电场分布。
补充资料:脑电位分布图
脑电位分布图 brain electrical activity mapping 脑电位活动的计算机分析方法。利用计算机将脑电图的电压值转换为功率值,再经过内插计算、成像技术,最后按不同频率段打印出从上俯视的头颅电位能量分布图解。频段可任意选择,最常用的分为a1 、a2、δ,θ及β六个频率段。脑电位分布图灵敏度高,可作定量分析,直观性强;计算方法尚未标准化,不能识别波形,不能持续监测,特异性差。已广泛用于颅内占位性病变、脑血管疾病的早期定位,儿童脑功能发育及痴呆的研究,精神疾病的分型以及癫痫病人异常发放的分布模式的研究。不能代替常规脑电图,两者可以互相补充。这项技术还在迅速发展中。 |
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