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Titlebook: Computational Continuum Mechanics of Nanoscopic Structures; Nonlocal Elasticity Esmaeal Ghavanloo,Hashem Rafii-Tabar,Seyed Ahmad F Book 20

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https://doi.org/10.1007/BFb0119244ariables over all material points to obtain the mechanical state of the body at particular points. Based on this hypothesis, the long-range interatomic interactions between material points are naturally taken into account and so the results that are obtained are dependent on the size of the material
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Stereoselective Heterocyclic Synthesishe mechanical characteristics of two-dimensional nanoscopic structures including thin films, nanoplates and nanosheets. The nonlocal shell model has been used to predict the behaviour of shell-like nanoscopic structures. In this chapter, we shall present the basic equations of all these highly compl
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Enzymemimetic C-C and C-N Bond Formations,atio SWCNTs, which are modelled using the nonlocal beam theories, while in the second subsection, we employ the nonlocal shell models to theoretically study the mechanical behaviour of carbon nanotubes. In the present chapter, we use the nonlocal . approach owing to its wide and successful use in so
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Fundamental Tenets of Nanomechanicsmposites, molecular dynamics, molecular mechanics, design of microelectromechanical and nanoelectromechanical systems (MEMS and NEMS), and cellular biomechanics (V. Harik (ed.), Trends in Nanoscale Mechanics, Springer, New York, 2014) [.]. Nanoscale mechanics provides the scientific foundation and t
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Essential Concepts from Nonlocal Elasticity Theoryariables over all material points to obtain the mechanical state of the body at particular points. Based on this hypothesis, the long-range interatomic interactions between material points are naturally taken into account and so the results that are obtained are dependent on the size of the material
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Nonlocal Modelling of Nanoscopic Structureshe mechanical characteristics of two-dimensional nanoscopic structures including thin films, nanoplates and nanosheets. The nonlocal shell model has been used to predict the behaviour of shell-like nanoscopic structures. In this chapter, we shall present the basic equations of all these highly compl
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