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康德前批判时期的物质理论
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作者 买买提依明·吾布力 《淮北职业技术学院学报》 2021年第1期23-26,共4页
康德前批判时期的物质理论可以被重构为一种形而上学演绎体系,而康德在回应基本物质可分性之争的过程中提出了自己的物质理论。康德将本质的自然力视为形而上学第一原则,将基本物质确立为由此自然力的作用范围所规定的物理单子。物理单... 康德前批判时期的物质理论可以被重构为一种形而上学演绎体系,而康德在回应基本物质可分性之争的过程中提出了自己的物质理论。康德将本质的自然力视为形而上学第一原则,将基本物质确立为由此自然力的作用范围所规定的物理单子。物理单子具有广延性,通过力的作用范围填充空间,以力壳原子在场。虽然力壳原子所填充的空间在几何学意义上无限可分,但力壳原子本身在物理学意义上不可再分。力壳原子的中心点不存在坚硬的微粒,处处存在的只是力的作用。康德的这种物质理论由于其既缺乏实验依据又缺乏数学演绎而失败,但在科学思想史中以及在康德哲学的研究中具有重要的理论意义。 展开更多
关键词 康德 前批判时期 物质理论 力壳原子
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Understanding formation mechanism of ZnO diatomic chain and multi-shell structure using physical mechanics:Molecular dynamics and first-principle simulations 被引量:9
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作者 WANG BinBin WANG FengChao ZHAO YaPu 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2012年第6期1138-1146,共9页
In this paper,the possibility of the monatomic chain (MC) formation for ZnO material was studied by molecular dynamics (MD) simulation.The process of MC formation and the effects of temperature,strain rate and size we... In this paper,the possibility of the monatomic chain (MC) formation for ZnO material was studied by molecular dynamics (MD) simulation.The process of MC formation and the effects of temperature,strain rate and size were studied extensively.The tensile process can be divided to be five stages and the ZnO diatomic chain (DC) can be found.The MD results show that most atoms in MC came from the original surface of ZnO nanowires (NWs).Temperature and strain rate are two important factors affecting the process,and both high temperature and low strain rate in a certain range would be beneficial to the formation of DC.Moreover,the effects of strain rate and temperature could attribute to the Arrhenius model and the energy release mechanism.Furthermore,multi-shell structure was found for the samples under tensile strain and the layer-layer distance was about 3.Our studies based on density functional theory showed that the most stable structure of ZnO DC was confirmed to be linear,and the I-V curve was also got using ATK. 展开更多
关键词 diatomic chain multi-shell structure ZNO size effect temperature and strain rate effects
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