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Table of Contents
Chapter1: Introduction
Chapter2: Shock Physics Fundamentals
Part I: Nonlinear Elasticity and Equations of State
Chapter3: Lagrangian Formulation
Chapter4: Eulerian Formulation
Chapter5: Logarithmic Formulation
Chapter6: Equations of State
Part II: Inelasticity: Plasticity, Twinning, Fracture, and Flow
Chapter7: Dislocation Plasticity in Single Crystals
Chapter8: Shock Compression of Ductile Polycrystals
Chapter9: Deformation Twinning in Single Crystals
Chapter10: Fracture and Flow in Brittle Solids
Part III Internal Structure: Differential-Geometric Modeling
Chapter11: Finsler-Geometric Modeling of Structural Changes in Solids.
Chapter2: Shock Physics Fundamentals
Part I: Nonlinear Elasticity and Equations of State
Chapter3: Lagrangian Formulation
Chapter4: Eulerian Formulation
Chapter5: Logarithmic Formulation
Chapter6: Equations of State
Part II: Inelasticity: Plasticity, Twinning, Fracture, and Flow
Chapter7: Dislocation Plasticity in Single Crystals
Chapter8: Shock Compression of Ductile Polycrystals
Chapter9: Deformation Twinning in Single Crystals
Chapter10: Fracture and Flow in Brittle Solids
Part III Internal Structure: Differential-Geometric Modeling
Chapter11: Finsler-Geometric Modeling of Structural Changes in Solids.