Preface |
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Classical Statistical Dynamics |
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2.1 Sample Spaces and States |
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2.2 Random Variables, Algebras |
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3.3 Convergence to Equilibrium |
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4.3 The Hard-Core Model of Chemical Kinetics |
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4.3.1 Isomers and Diffusion in a Force-Field |
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4.4.1 Unimolecular Reactions |
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4.6 Activity-led Reactions |
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5.2 The Free-energy Theorem |
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5.5 Dilation of Markov Chains |
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6.3 A Driven Chemical System |
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7.1 Hydrostatics of a Gas of Hard Spheres |
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7.2 The Fundamental Equation |
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7.5 A Correct Navier-Stokes System |
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Quantum Statistical Dynamics |
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8. Introduction to Quantum Theory |
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9.1 Algebras of Observables |
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10. Linear Quantum Dynamics |
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10.2 Random Quantum Dynamics |
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10.3 Quantum Dynamical Maps |
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11. Isolated Quantum Dynamics |
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11.1 The Quantum Boltzmann Map |
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11.2 The Quantum Heat-Particle |
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11.3 Fermions and Ions with a Hard Core |
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11.4 The Quantum Boltzmann Equation |
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12. Isothermal and Driven Systems |
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12.1 Isothermal Quantum Dynamics |
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12.2 Convergence to Equilibrium |
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12.3 Driven Quantum Systems |
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13.1 The Algebra of an Infinite System |
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13.2 The Reversible Dynamics |
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13.3 Return to Equilibrium |
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13.4 Irreversible Linear Dynamics |
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14. Proof of the Second Law |
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14.2 Entropy Increase in Quantum Mechanics |
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14.3 The Quantum Kac Model |
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14.6 The Marginals and Entropy |
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15.1 The Jaynes-Ingarden Theory |
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15.2 Non-Linear Ising Dynamics |
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15.3 Ising Model Close to Equilibrium |
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15.4 Non-linear Heisenberg Model |
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15.5 Estimation; the Cramer-Rao Inequality |
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15.6 Efron, Dawid and Amari |
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15.7 Entropy Methods, Exponential Families |
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15.8 The Work of Pistone and Sempi |
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15.9 The Finite-Dimensional Quantum Info-Manifold |
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15.10 Araki's Expansionals and the Analytic Manifold |
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15.11 The Quantum Young Function |
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15.12 The Quantum Cramer Class |
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15.13 The Parameter-Free Quantum Manifold |
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Bibliography |
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Index |
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