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大学生冬季长跑活动耐力增长的“胡克”现象分析
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作者 钱锋 《体育科技文献通报》 2013年第6期92-93,共2页
本文通过文献资料法、专家访谈法、数理统计法对我省8所高校的学生进行了4个月的冬季长跑活动实验,一组采用每天1500M跑(4个月累计180KM),一组按既定模式正常体育教学。实验结果发现两个不同形式体育练习的群体耐力有很大区别:实验组学... 本文通过文献资料法、专家访谈法、数理统计法对我省8所高校的学生进行了4个月的冬季长跑活动实验,一组采用每天1500M跑(4个月累计180KM),一组按既定模式正常体育教学。实验结果发现两个不同形式体育练习的群体耐力有很大区别:实验组学生的耐力素质明显好于既定模式正常体育教学的学生,实验组学生耐力素质的增长遵循"胡克"定律(Hook’s law,F=KX)。 展开更多
关键词 大学生 冬季长跑活动 耐力素质 “胡克”定律
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Density-functional-theory formulation of classical and quantum Hooke's law 被引量:3
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作者 HU Hao LIU Feng 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第4期692-698,共7页
A fundamental property of solid materials is their stress state. Stress state of a solid or thin film material has profound effects on its thermodynamic stability and physical and chemical properties. The classical me... A fundamental property of solid materials is their stress state. Stress state of a solid or thin film material has profound effects on its thermodynamic stability and physical and chemical properties. The classical mechanical stress (σ^M) originates from lat- tice strain (e), following Hooke's law: σ^M=Cε, where C is elastic constant matrix. Recently, a new concept of quantum electronic stress (o-QE) is introduced to elucidate the extrinsic electronic effects on the stress state of solids and thin films, which follows a quantum analog of classical Hooke's law: ~QE=E(An), where E is the deformation potential of electronic states and An is the variation of electron density. Here, we present mathematical derivation of both the classical and quantum Hooke's law from density functional theory. We further discuss the physical origin of quantum electronic stress, arising purely from electronic excitation and perturbation in the absence of lattice strain (g=0), and its relation to the degeneracy pressure of electrons in solid and their interaction with the lattice. 展开更多
关键词 stress in the solid quantum electronic stress quantum Hooke's law density functional theory
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