目录 Preface to the English EditionPreface to the Chinese Edition6 Thermoelasticity6.1 Introduction6.2 The Conservation Law of Energy and the Entropy Inequality6.3 Constitutive Relations in Thermoelasticity6.4 System of Thermoelastodynamics and Its Mathematical Structure6.5 Propagation of Acceleration WavesExercisesBibliography7 Viscoelasticity7.1 Introduction7.2 Constitutive Equations of Viscoelastic Materials and the Dissipation Inequality7.3 System of Viscoelastodynamics and Its Well-Posed Problems7.4 Singularity of the Kernel and the Propagation of Linear Waves7.5 Propagation of Acceleration WavesExercisesBibliography8 Kinetic Theory of Gases8.1 Introduction8.2 Boltzmann Equation8.3 Equilibrium State of Dilute Gases8.4 Conservation Laws8.5 Zero-Order Appromation8.6 First-Order Appromation8.7 Vlasov Equation and Related Coupled SystemsExercisesBibliography9 Special Relativity and Relativistic Fluid Dynamics9.1 Introduction9.2 Fundamental Principles in Special Relativity; the Lorentz Transformation9.3 Space-Time Theory in Special Relativity9.4 Relativistic Dynamics9.5 Relativistic Fluid Dynamics9.6 Mathematical Structure of the System of Relativistic Fluid Dynamics9.7 System of Relativistic MagnetohydrodynamicsExercisesBibliography10 Quantum Mechanics10.1 Establishment of Quantum Mechanics10.2 Schrrdinger Equation and Wave Function10.3 Introduction to the Fundamental Principles of Quantum Mechanics10.4 Relativistic Quantum Mechanics and the Dirac EquationExercisesBibliographyAppendix C Tensors in Minkowski Four-Space-TimeC. 1 Minkowski Four-Space-Time and the Lorentz TransformationC.2 Tensors in Minkowski Four-Space-TimeC.3 Operations of TensorsC.4 Covariant Derivatives of TensorsIndex 作者介绍
序言 Preface to the English EditionPreface to the Chinese Edition6 Thermoelasticity6.1 Introduction6.2 The Conservation Law of Energy and the Entropy Inequality6.3 Constitutive Relations in Thermoelasticity6.4 System of Thermoelastodynamics and Its Mathematical Structure6.5 Propagation of Acceleration WavesExercisesBibliography7 Viscoelasticity7.1 Introduction7.2 Constitutive Equations of Viscoelastic Materials and the Dissipation Inequality7.3 System of Viscoelastodynamics and Its Well-Posed Problems7.4 Singularity of the Kernel and the Propagation of Linear Waves7.5 Propagation of Acceleration WavesExercisesBibliography8 Kinetic Theory of Gases8.1 Introduction8.2 Boltzmann Equation8.3 Equilibrium State of Dilute Gases8.4 Conservation Laws8.5 Zero-Order Approximation8.6 First-Order Approximation8.7 Vlasov Equation and Related Coupled SystemsExercisesBibliography9 Special Relativity and Relativistic Fluid Dynamics9.1 Introduction9.2 Fundamental Principles in Special Relativity; the Lorentz Transformation9.3 Space-Time Theory in Special Relativity9.4 Relativistic Dynamics9.5 Relativistic Fluid Dynamics9.6 Mathematical Structure of the System of Relativistic Fluid Dynamics9.7 System of Relativistic MagnetohydrodynamicsExercisesBibliography10 Quantum Mechanics10.1 Establishment of Quantum Mechanics10.2 Schrrdinger Equation and Wave Function10.3 Introduction to the Fundamental Principles of Quantum Mechanics10.4 Relativistic Quantum Mechanics and the Dirac EquationExercisesBibliographyAppendix C Tensors in Minkowski Four-Space-TimeC. 1 Minkowski Four-Space-Time and the Lorentz TransformationC.2 Tensors in Minkowski Four-Space-TimeC.3 Operations of TensorsC.4 Covariant Derivatives of TensorsIndex
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