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Titlebook: High-Pressure Shock Compression of Solids VI; Old Paradigms and Ne Yasuyuki Horie,Lee Davison,Naresh N. Thadhani Book 2003 Springer Science

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楼主: 航天飞机
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Craig M. Tarver Anwendungsprobleme.Enthält alle wichtigen Themen der Höhere.Dieses Arbeitsbuch enthält die Aufgaben, Hinweise, Lösungen und Lösungswege zu allen sechs Teilen des Lehrbuchs Arens et al., Mathematik. Die Inhalte des Buchs stehen als pdf-Dateien auch auf der Website zum Buch matheweb zur Verfügung..Du
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Anwendungsprobleme.Enthält alle wichtigen Themen der Höhere.Dieses Arbeitsbuch enthält die Aufgaben, Hinweise, Lösungen und Lösungswege zu allen sechs Teilen des Lehrbuchs Arens et al., Mathematik. Die Inhalte des Buchs stehen als pdf-Dateien auch auf der Website zum Buch matheweb zur Verfügung..Du
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Traditional Analysis of Nonlinear Wave Propagation in Solids,has been done concerns the response of materials to compression because the experiments are convenient and permit access to states of larger deformation than can be attained in materials under tension. The simplest situation considered is that in which a wave is introduced into the material by apply
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Paradigms and Challenges in Shock Wave Research, underlying motivation for these studies is to promote a physical understanding of dynamic material response. A fundamental understanding of material compression allows development of material models used to predict the response of materials subjected to dynamic loading. The past fifty years have pr
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,What is a Shock Wave? —The View from the Atomic Scale,ch to study processes at the atomistic level on the computer. In the last three decades, molecular-dynamics (MD) simulations have been applied to shock waves in gases, liquids, and solids. In the case of solids, the problem becomes more complicated because of defect structures, which have an intrins
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Meso-Macro Energy Exchange in Shock Deformed and Fractured Solids, its macroscopic response on impact. Many theoretical models based on the microstructure dynamics, in particular on dislocation dynamics, have been developed to describe the macroscopic behavior of material under both uniaxial stress and uniaxial strain conditions. Nevertheless, this coupling is poo
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The Shock Wave as a Nonequilibrium Transport Process,urroundings through the interphase boundaries and the transport processes occurring within it. The transport processes in a medium are characterized by their rates, intensity, and the initial state of the medium. There a problem arises: how does one determine the state of the medium under given load
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Non-Equilibrium Evolution of Collective Microdamage and Its Coupling with Mesoscopic Heterogeneitiemesoscale inhomogeneities and stress fluctuations has certainly been recognized by experimentalists and theoretical analysts. However, the issue of heterogeneous and non-equilibrium shock front dynamics on the mesoscale, has largely been ignored, in spite of the fact that these must strongly influen
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