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关注电磁学相关物理效应的教学 被引量:2
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作者 李长胜 冯丽爽 《电气电子教学学报》 2015年第1期18-20,共3页
本文提出在"电磁场理论"和"电磁场与电磁波"课程教学中关注电磁学相关物理效应,并分析其必要性和可行性。关注电磁学效应的教学,将有助于学生对电磁场与电磁波相关基本概念和定理的理解,有利于提高学生的创新研究能... 本文提出在"电磁场理论"和"电磁场与电磁波"课程教学中关注电磁学相关物理效应,并分析其必要性和可行性。关注电磁学效应的教学,将有助于学生对电磁场与电磁波相关基本概念和定理的理解,有利于提高学生的创新研究能力,有助于激发学生的学习兴趣和科研热情。在本课程教学过程中,可根据不同专业的需要和教学内容的相关性等,适当选讲具有一定理论和实际意义的电磁学效应。 展开更多
关键词 电磁场理论 电磁学效应 创新能力培养
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Galvanic effect of magnetite on electrochemical oxidation of arsenopyrite in acidic culture medium 被引量:1
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作者 Sha DENG Guo-hua GU +2 位作者 Tao LONG Wei XIAO Wei YANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第11期3744-3752,共9页
The galvanic interaction of arsenopyrite−magnetite in acidic culture medium was investigated by electrochemical measurements,X-ray photoelectron spectroscopy characterization and leaching experiments.The results indic... The galvanic interaction of arsenopyrite−magnetite in acidic culture medium was investigated by electrochemical measurements,X-ray photoelectron spectroscopy characterization and leaching experiments.The results indicated that the rest potential of magnetite was 321 mV,which was more anodic than 223 mV of arsenopyrite,and the galvanic current was 7.40μA,verifying the existence of the galvanic interaction between arsenopyrite and magnetite.The galvanic potential and polarization curves suggested that the redox behaviors of arsenopyrite dominated the overall galvanic interaction.The galvanic interaction enhanced the electrochemical dissolution of arsenopyrite with the generation of more oxidation products(S^(0),SO_(3)^(2−),SO_(4)^(2−)and AsO_(3)^(3−)) on arsenopyrite and an increase in the chemical reactivity of the surface.Leaching experiments of 6 days showed that the presence of magnetite improved the arsenic release from arsenopyrite by 30 mg/L,and further confirmed the enhanced oxidation of arsenopyrite when coupled with magnetite. 展开更多
关键词 ARSENOPYRITE MAGNETITE galvanic interaction ELECTROCHEMISTRY surface properties LEACHING
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Effects of electromagnetic stirring on microstructure and mechanical properties of super light Mg-Li-Al-Zn alloy 被引量:1
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作者 姚磊 郝海 +2 位作者 谷松伟 董汉伟 张兴国 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2010年第B07期388-392,共5页
Effects of electromagnetic stirring on the microstructure and mechanical properties of the magnesium-lithium-aluminum alloy were studied.The results reveal that,the morphology of theαphase changes from the long block... Effects of electromagnetic stirring on the microstructure and mechanical properties of the magnesium-lithium-aluminum alloy were studied.The results reveal that,the morphology of theαphase changes from the long block to globular structure andβ phase distributes more widely in the periphery ofαphase when the electromagnetic stirring voltage is higher than 110 V.The mechanical properties are increased significantly with the increasing electromagnetic stirring.The tensile strength is improved from 172 to 195 MPa,and the elongation is increased from 10.65%to 25.75%. 展开更多
关键词 Mg-Li-Al-Zn alloys electromagnetic stirring microstructure mechanical properties
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Giant magnetoresistance:history,development and beyond 被引量:1
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作者 TIAN YuFeng YAN ShiShen 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2013年第1期2-14,共13页
With the discovery of giant magnetoresistance(GMR),research effort has been made to exploiting the influence of spins on the mobility of electrons in ferromagnetic materials and/or artificial structures,which has lead... With the discovery of giant magnetoresistance(GMR),research effort has been made to exploiting the influence of spins on the mobility of electrons in ferromagnetic materials and/or artificial structures,which has lead to the idea of spintronics.A brief introduction is given to GMR effects from scientific background to experimental observations and theoretical models.In addition,the mechanisms of various magnetoresistance beyond the GMR are reviewed,for instance,tunnelling magnetoresistance,colossal magnetoresistance,and magnetoresistance in ferromagnetic semiconductors,nanowires,organic spintronics and non-magnetic systems. 展开更多
关键词 giant magnetoresistance SPINTRONICS ferromagnetic semiconductors spin dependent scattering tunnelling magnetore-sistance
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