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1)  surface magnetic field distribution
表露场分布
1.
Based on the uniform magnetization model of the surface magnetic field distribution on multi pole drum for magnetic encoder, the surface magnetic field distribution on multi pole drum for magnetic encoder was studied with numerical analysis method, and the general expression of surface magnetic field distribution on multi pole drum was found.
基于磁编码器多极磁鼓表露场分布的均匀磁化理论模型,采用数值分析方法计算磁编码器多极磁鼓的表露场分布,得到了多极磁鼓的表露场分布的数值表达式。
2)  surface electric field distribution
表面电场分布
3)  identify oneself
表露身分
4)  field pattern
场图,场分布
5)  Magnetic field distribution
磁场分布
1.
Numerical analysis was made on magnetic field distribution in working area of magnetic abrasive finishing by the finite difference method,and a kind of arithmetic to calculate the isodynamic was put forward.
利用有限差分的方法对磁极开槽情况下磁力研磨加工区域中的磁场分布进行了数值分析,提出了一种等磁位线的计算绘制算法,得到了加工区域磁场分布的等磁位线图。
2.
Magnetic field distribution of the ECRH superconducting magnet on HL-2A tokamak has been measured,and the results show that the normalized axial magnetic induction is not less than 0.
测量了HL-2A装置ECRH超导磁体的磁场分布。
3.
The effects of structural parameters of target cathode on magnetic field distribution during magnetron sputtering were simulated and analyzed to design a new-type rectangularly plane cathode,then the magnetic field of the designed cathode was simulated and analysed.
文章模拟分析了结构参数对磁控溅射阴极磁场分布的影响,设计了一种新型的矩形平面磁控溅射阴极,并对设计的阴极磁场进行模拟分析,结果表明有效提高了靶材表面磁场分布的均匀性。
6)  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。
补充资料:开关场分布
分子式:
CAS号:

性质:在饱和磁滞回线的微分曲线上,峰值一半处两点之间的宽度称半峰宽ΔH(见图),半峰宽与内禀矫顽力之比称为开关场分布,其表达式为SFD=ΔH/MHc。该值描述磁滞回线在矫顽力附近的陡峭程度。对磁记录材料而言,其值越小,磁滞回线在Hc附近越陡峭,录放信号的灵敏度越高。

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