1.
Research on Localized Electromagnetic Enhancement of Metallic Nano-Tip by Numerical Simulation;
金属纳米尖局域电磁场增强的数值模拟研究
2.
The Relationship Between the Geometry of an Isolated Ag Nanoshell Dimer and the Electromagnetic Field Enhancement
银纳米球壳二聚体的几何结构与电磁场增强共振波长的关系
3.
Electromagnetic Properties of Heterogeneous Materials and the Local Electric Field Enhancement Effects
异质材料电磁特性及局域场增强效应研究
4.
The force of attraction is dependent on the strength of the magnetic field that again is dependent upon the strength of the current.
引力取决于磁场强度,磁场强度取决于电流强度。
5.
Electromagnetic Effect of Surface Enhanced Raman for Bioanalytical Applications;
表面增强拉曼散射的电磁场效应在生化分析中的应用
6.
Studies on Discharge Characteristics and Applications of ICP Enhanced Unbalanced Magnetron Sputtering in Cusp-field Confined Magnetron;
会切场约束ICP增强非平衡磁控溅射放电及应用研究
7.
an electromagnetic unit of magnetic intensity.
测量磁场强度的电磁单位。
8.
On Space Electric Field and Magnetic Field of Charge Spring Block in Uniform Electric Field;
匀强电场中带电弹簧振子空间电场磁场
9.
If they are aligned, they reinforce each other to create a field that can be detected from the outside.
如果这些电子均朝向同一方向自转,磁力能彼此增强,从而产生一个能被外界所识别的磁场。
10.
An ambient field aids the magnetization from the exciting current.
背景场加强了激励电流的磁化强度。
11.
Solution of Inductance for Bearingless Switched Reluctance Motor by Using Enhanced Incremental Energy Method
增强能量增量法求解无轴承开关磁阻电机电感
12.
Theoretical Study on Enhancing Terahertz Radiation;
太赫兹电磁辐射增强特性的理论研究
13.
The alternative-pumping up the power-would zap people with rather too much electromagnetic radiation to be entirely safe.
另一种方法是增加电压,不过这种方法并不安全,所产生的电磁场辐射过强,容易伤人。
14.
Discharge characteristics and charging modes of magnetically enhanced negative corona discharges with wide inter-electrode spacing and applications
磁增强负电晕放电特性和荷电方式研究
15.
rotating-field electromagnetic pump
旋转(磁)场电磁泵
16.
Capturing Fine Particles Using Magnetical Enhancement Corona Pre-Charger in the Front of an Electrostatic Enhancement Filter;
静电增强过滤器前应用磁增强预荷电技术捕集微细颗粒的研究
17.
The stronger the magnetic field, the more current is generated.
磁场越强,发出的电流就越多。
18.
STUDY OF Ni-P ALLOY ELECTRO-DEPOSITED WITH HIGH MAGNETIC FIELD
强磁场中电沉积Ni-P合金的研究