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1.
Miniaturize the Endoscope Localizing Sensor by Regular Tetrhedron Shaped Differential Magnetic Dipoles;
基于正四面体结构差分磁偶极子对内窥镜定位探头微型化的研究
2.
The fundamental magnetic entities are magnetic dipoles.
基本的磁体是磁偶极子。
3.
Calculating the Magnetic Field of a Magnetic Dipe by Biot-Savarts Law;
用毕奥-萨伐尔定律计算磁偶极子的磁场分布
4.
interaction of magnetic dipoles
磁偶极子的相互作用
5.
a molecule that is a permanent dipole.
是永久性偶极子的分子。
6.
An orbiting electron in an atom will have a magnetic dipole moment.
一个原子中旋转的电子会有磁偶极距。
7.
Dipole model method for dielectric electromagnetic scattering analysis
介质体电磁散射的偶极子模型法研究
8.
dipole dipole interaction
偶极子与偶极子相互酌
9.
On Interaction Energy and Mutual Force of Magnetic Dipole and Magnetic Field;
磁偶极子与磁场的相互作用能与相互作用力
10.
Magnetic Dipole s Interaction Energy and Potential Energy in Outer Magnetic Field;
磁偶极子在外磁场中的相互作用能和势能
11.
Magnetic Field Created by Magnetic Dipole beyond the Mid-vertical plane Using the Reciprocity Principle;
用互易~[1]法求磁偶极子中垂面远处的磁场
12.
Magnetic gradient tensor and its application on dipole localization
磁力梯度张量及在磁偶极子定位中的应用
13.
SO(2) Duality Theory of Electric Dipole and Magnetic Dipole Radiation;
电偶极和磁偶极辐射的SO(2)对偶理论
14.
The principle of the atom lens using a hexapole magnetic field and its aberration has been discussed.
分析了由六极磁场构成的原子束磁透镜的原理及像差。
15.
Only magnetic dipole and higher multipole configuratons occur in nature.
自然界中只能出现磁偶极子以及磁多极子的形式。
16.
Based on this method, the electromagnetic field and its derivative are calculated for demonstration from a known distributed current source simulating a simple lightning return stroke current model.
由电流密度的时空分布,用偶极子法计算了电流源产生的电磁场,给出了不同距离处电磁场的值。
17.
This paper offers a concise and rigorous method to calculate the magnetic field by a magnetic dipole using Biot Savart’s law.
本文提供了一种用毕奥 萨伐尔定律求解磁偶极子的磁场分布公式的方法 .
18.
A method to calculate the interaction force between two magnetic dipoles;
两磁偶极子间的相互作用力的一种计算方法