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圆柱形导磁介质端面的二次磁场特性 被引量:2
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作者 谢强 史佩伟 +1 位作者 董恩海 赵瑞敏 《矿冶》 CAS 2003年第3期29-31,48,共4页
为进一步研究开发新型高梯度磁选设备,对圆柱形导磁介质在外磁场中因磁化而在端面产生的二次磁场特性进行了研究。推导出圆柱形导磁介质端面产生的二次磁场分布公式;分析了影响该二次磁场力的各因素,得出了圆柱形导磁介质端面半径R与作... 为进一步研究开发新型高梯度磁选设备,对圆柱形导磁介质在外磁场中因磁化而在端面产生的二次磁场特性进行了研究。推导出圆柱形导磁介质端面产生的二次磁场分布公式;分析了影响该二次磁场力的各因素,得出了圆柱形导磁介质端面半径R与作用距离r的特征关系,以及最大磁场力随作用距离的变化关系式;指出圆柱形导磁介质的最大磁场力力程仅取决于圆柱形导磁介质的磁化状态。 展开更多
关键词 导磁介质 二次磁场 磁场 磁场力力程 高梯度磁选设备
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Unification of Gravity and Electromagnetism
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作者 Mohammed A. EI-Lakany 《Journal of Physical Science and Application》 2017年第3期15-24,共10页
Gravity and electromagnetism are two sides of the same coin, which is the clue of this unification. Gravity and electromagnetism are represented by two mathematical structures, symmetric and antisymmetric respectively... Gravity and electromagnetism are two sides of the same coin, which is the clue of this unification. Gravity and electromagnetism are represented by two mathematical structures, symmetric and antisymmetric respectively. Einstein gravitational field equation is the symmetric mathematical structure. Electrodynamics Lagrangian is three parts, for electromagnetic field, Dirac field and interaction term. The definition of canonical energy momentum tensor was used for each term in Electrodynamics Lagrangian to construct the antisymmetric mathematical structure; symmetric and antisymmetric gravitational field equations are two sides of the same Lagrangian. 展开更多
关键词 GRAVITY electromagnetism general theory of relativity quantum field theory nuclear and particle physics astrophysics and cosmology.
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