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Micromechanics and Nanomechanics of Composite Solids

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Cover of 'Micromechanics and Nanomechanics of Composite Solids'

Table of Contents

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    Book Overview
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    Chapter 1 Sequential and Concurrent Multiscale Modeling of Multiphysics: From Atoms to Continuum
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    Chapter 2 Atomistic Modelling of Nanoindentation of Multilayered Graphene-Reinforced Nanocomposites
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    Chapter 3 Molecular Dynamics Studies of Load Transfer in Nanocomposites Reinforced by Defective Carbon Nanotube
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    Chapter 4 Electrical Conductivity of Carbon Nanotube- and Graphene-Based Nanocomposites
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    Chapter 5 Mechanical Behavior of Nanowires with High-Order Surface Stress Effects
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    Chapter 6 The Design of Nano-Inhomogeneities with Uniform Internal Strain in Anti-Plane Shear Deformations of Composite Solids
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    Chapter 7 Ballistic Performance of Bimodal Nanostructured and Nanotwin-Strengthened Metals
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    Chapter 8 Full-Field Micromechanics of Precipitated Shape Memory Alloys
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    Chapter 9 Micromechanics of Ferroic Functional Materials
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    Chapter 10 Micromechanics of Bone Modeled as a Composite Material
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    Chapter 11 Linear Elastic Composites with Statistically Oriented Spheroidal Inclusions
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    Chapter 12 A Time-Incremental Eshelby-Based Homogenization Scheme for Viscoelastic Heterogeneous Materials
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    Chapter 13 Effects of Local Spin on Overall Properties of Granule Materials
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    Chapter 14 The Parametric HFGMC Micromechanics
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    Chapter 15 On Parameterization of the Reinforcement Phase Distribution in Continuous Fiber-Reinforced Composites
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    Chapter 16 Micromechanical Modeling of Polymeric Composite Materials with Moisture Absorption
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    Chapter 17 General Interface Integral Equations in Elasticity of Random Structure Composites
Attention for Chapter 4: Electrical Conductivity of Carbon Nanotube- and Graphene-Based Nanocomposites
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