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1)  magnetic polarization J
磁极化强度J
1.
and magneticdipole moment P,magnetization M and magnetic polarization J by calculating and analyzing three differentforms.
旨在通过对玻尔磁子μB的三种不同表现形式的计算和分析,进而证明了轨道磁矩M,与磁偶极矩P、磁化强度M与磁极化强度J的等价性,同时也客观地说明了量纲在物理学研究中的重要地位和作用。
2)  saturation magnetic polarization
饱和磁极化强度
1.
Experimelltal results show that the saturation magnetic polarization Jsof (Fe,Co)-N films with 0-15%Co (atomic fraction) increases with the Co content, reachinga maximum value of 2.
实验结果表明,Co的原子分数在0-15%范围内薄膜的饱和磁极化强度Js值随Co含量的增加而增大;Co的原子分数为15%时,薄膜的Js达到最大值(2。
3)  remanent polarization
剩余磁极化强度
4)  strength of magnet
磁极强度
5)  magnetization [英][,mægnəti'zeiʃən]  [美][,mægnətɪ'zeʃən]
磁化强度
1.
X-Y-Z model anisotropic ferrimagnetism Heisenberg system——the ground state magnetization of two- dimensional square double lattice;
X-Y-Z模型-各向异性亚铁磁性Heisenberg系统——正方复式晶格的基态磁化强度
2.
Effect of magnetization on exchange biasing in Co-Ni/FeMn bilayers;
Co-Ni/FeMn双层膜中磁化强度对交换偏置的影响
3.
Energy spectrum and magnetization of single electron quantum dot in a periodic magnetic field;
空间周期磁场中单电子量子点的能谱和磁化强度
6)  magnetization intensity
磁化强度
1.
The magnetization intensity, residual magnetization intensity and coercitive force of electroless Co-Ni-B and Co-Ni-B-La alloy films were compared.
比较了化学沉积Co-Ni-B合金镀层与化学沉积Co-Ni-B-La合金镀层的磁化强度、剩余磁化强度和矫顽力。
2.
They have discussed the influence of damping parameter and temperature on the relaxation of particle magnetization intensity.
考虑到原子作非简谐振动,求出外磁场中单畴粒子的自由能和弛豫时间的表达式,讨论了阻尼系数和温度对粒子磁化强度弛豫时间的影响。
3.
the border relation of polarization intensity and magnetization intensity have been delivered with a method which differs from general electrodynamics literature and bases on microcosmic physical medium model, and this method is in favor of understanding and boundary value relation from point of view of microcosm.
用和一般电动力学教材不同的方法即在介质经典微观物理模型的基础上推导出了极化强度Pω和磁化强度Mω的边值关系,使得更有利于从微观的角度理解这两个边值关系,并得出了极化电荷分布深度和磁化电流的分布深度都在分子线度的数量级这一结论。
补充资料:表光合强度(见光合强度)


表光合强度(见光合强度)
forecast of sowing or transplanting time

b iaoguanghe qiangdu表光合强度见光合强度
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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