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CONTINUUM MECHANICS for ENGINEERS

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4.5 The Material Derivative<br />

4.6 De<strong>for</strong>mation Gradients, Finite Strain Tensors<br />

4.7 Infinitesimal De<strong>for</strong>mation Theory<br />

4.8 Stretch Ratios<br />

4.9 Rotation Tensor, Stretch Tensors<br />

4.10 Velocity Gradient, Rate of De<strong>for</strong>mation, Vorticity<br />

4.11 Material Derivative of Line Elements, Areas, Volumes<br />

Problems<br />

5 Fundamental Laws and Equations<br />

5.1 Balance Laws, Field Equations, Constitutive<br />

Equations<br />

5.2 Material Derivatives of Line, Surface, and<br />

Volume Integrals<br />

5.3 Conservation of Mass, Continuity Equation<br />

5.4 Linear Momentum Principle, Equations of Motion<br />

5.5 The Piola-Kirchhoff Stress Tensors,<br />

Lagrangian Equations of Motion<br />

5.6 Moment of Momentum (Angular Momentum)<br />

Principle<br />

5.7 Law of Conservation of Energy, The Energy Equation<br />

5.8 Entropy and the Clausius-Duhem Equation<br />

5.9 Restrictions on Elastic Materials by the Second<br />

Law of Thermodynamics<br />

5.10 Invariance<br />

5.11 Restrictions on Constitutive Equations<br />

from Invariance<br />

5.12 Constitutive Equations<br />

References<br />

Problems<br />

6 Linear Elasticity<br />

6.1 Elasticity, Hooke’s Law, Strain Energy<br />

6.2 Hooke’s Law <strong>for</strong> Isotropic Media, Elastic Constants<br />

6.3 Elastic Symmetry; Hooke’s Law <strong>for</strong> Anisotropic Media<br />

6.4 Isotropic Elastostatics and Elastodynamics,<br />

Superposition Principle<br />

6.5 Plane Elasticity<br />

6.6 Linear Thermoelasticity<br />

6.7 Airy Stress Function<br />

6.8 Torsion<br />

6.9 Three-Dimensional Elasticity<br />

Problems

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