1.
Analysis on Eddy Current Thermal Effect of the Rigid Conductive Thin Plate Under Multi-pulse Magnetic Field
多脉冲磁场下刚性导电薄板涡电流热效应分析
2.
Heading Effect of Eddy Current on the Dynamic Behavior of Terfenol-D Rod;
涡电流热效应对Terfenol-D棒材动态响应的影响
3.
Corrections of Thermal Transpiration in Capacitance Diaphragm Gauges
电容薄膜规热流逸效应修正方法研究
4.
The chief effects of electric currents are the magnetic, heating and chemical effects.
电流的主要效应有磁效应、热效应和化学效应三种。
5.
Inverse time current protection is judged by calculating the RMS of current and adding up heating effect.
长延时采用计算电流真有效值,累计热效应判别。
6.
As an electric current passes through, the Joule heating and electromigration effects occur in the flip chip solder bumps.
当电流通过焊点时,会伴随产生焦耳热效应和电迁移效应。
7.
The electrodynamics of heating effects and current distribution in electric networks.
动电学关于热效应和电网中电流分配的电动力学
8.
Thermal Effect of the Eddy Current Sensor Probe for Measuring the Gaps Between Curved Surfaces
曲面间隙测量电涡流传感器探头的热效应研究
9.
Elastic Effect Analysis of the Current-carring Plate and Shell in Electromagnetic Thermal and Mechnincal Field
载流板壳电磁、热、机械场耦合的弹性效应分析
10.
Evaluation of Hot Carrier Effect of SiGe HBT
SiGeHBT的热载流子效应评价
11.
Although the induced emf is not altered, the currents and their heating effects are minimized.
虽然感生电动势没有改变,但却把涡电流及其热效应减到最
12.
Self-heating Effect and Hot-carrier Effect of Strained-Si CMOS
应变硅CMOS器件的自热效应与热载流子效应
13.
Effect of TEMHD on the Microstructure of Directionally Solidified Al Alloy;
热电磁流体动力学效应对铝合金定向凝固显微组织的影响
14.
Numerical Simulation of Thermoelectric Magnetohydrodynamic Effect During Directional Solidification of Al-4.0%Cu Alloy
Al-4.0%Cu合金定向凝固中热电磁流体动力学效应的数值模拟
15.
a thermoelectric(al) current
温差电流, 热电流
16.
The hot temperature difference and adiabatic efficiency increased by increasing cold air fraction,but cold temperature difference decreased.
冷流比增加,涡流板制热效应和绝热效率增加,而制冷效应下降.
17.
The Research of Hot-Carrier Effect and NBTI Effect on Ultra Thin Gate Oxide PMOS Device
超薄栅PMOS器件热载流子效应和NBTI效应的研究
18.
This results in a fourfold increase of heat (Correspondingly,heat drops by 75% if current density is reduced by half, e.g. by doubling the effective electrode contact area.
相应地,如果将有效的电极接触面积加大一倍,电流密度将减少一半,热量则减少75%。