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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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Modelling the Mechanical Characteristics of One-Dimensional Nanoscopic Structuresand employed. These structures can be (a) metallic, ceramic, or polymeric, (b) amorphous or crystalline, (c) isolated or embedded within a continuum (Ashby, Ferreira, Schodek (2009) Nanomaterials, nanotechnologies and design: an introduction for engineers and architects. Elsevier, Oxford).
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Recent Developments and Future Challenges in the Application of Nonlocal Elasticity Theorynal ideas discussed so far in this book. To complement and complete our discussions about the nonlocal elasticity approaches, we include in this chapter some of the important concepts that have been proposed in these latest studies.
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Fundamental Tenets of Nanomechanicsthesis, control, engineering, and manipulation of atomistic and molecular systems and structures. The appearance of nanoscience and nanotechnology has prompted fundamental and radical changes in varieties of scientific and engineering disciplines. Among the diverse branches of the nanoscience, the s
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Elastic Properties of Carbon-Based Nanoscopic Structuresof the mechanical properties (e.g. elastic constants) and physical dimensions (e.g. effective thickness) of the system in order for the theory to be applied properly. Furthermore, there is no consent among different researchers regarding the choice of the nonlocal parameter. There has been disagreem
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