Evolved from McQuarrie and Simon's best-selling Physical Chemistry: A Molecular Approach, this text follows a similar path by first covering the principles of quantum mechanics before engaging those ideas in the subsequent development of thermodynamics. Although many of the chapters are similar to those in the physical chemistry text, new material has been added throughout along with three entirely new chapters.
Evolved from McQuarrie and Simon's best-selling Physical Chemistry: A Molecular Approach, this text follows a similar path by first covering the principles of quantum mechanics before engaging those ideas in the subsequent development of thermodynamics. Although many of the chapters are similar to those in the physical chemistry text, new material has been added throughout along with three entirely new chapters.
Preface 1. The Energy Levels of Atoms and Molecules Math Chapter A: Numerical Methods 2. The Properties of Gases Math Chapter B: Probability and Statistics 3. The Boltzmann Factor and Partition FunctionsMath Chapter C: Series and Limits 4. Partition Functions and Ideal GasesMath Chapter D: Partial Differentiation 5. The First Law of ThermodynamicsMath Chapter E: The Binomial Distribution and Stirling’s Approximation 6. Entropy and the Second Law of Thermodynamics 7. Entropy and the Third Law of Thermodynamics 8. Helmholtz and Gibbs Energies 9. Phase Equilibria 10. Solutions I: Liquid-Liquid Solutions 11. Solutions II: Solid-Liquid Solutions 12. Chemical Equilibrium 13. Thermodynamics of Electrochemical Cells 14. Nonequilibrium Thermodynamics Answers to Numerical Problems Illustration Credits Index
Preface 1. The Energy Levels of Atoms and Molecules Math Chapter A: Numerical Methods 2. The Properties of Gases Math Chapter B: Probability and Statistics 3. The Boltzmann Factor and Partition FunctionsMath Chapter C: Series and Limits 4. Partition Functions and Ideal GasesMath Chapter D: Partial Differentiation 5. The First Law of ThermodynamicsMath Chapter E: The Binomial Distribution and Stirling’s Approximation 6. Entropy and the Second Law of Thermodynamics 7. Entropy and the Third Law of Thermodynamics 8. Helmholtz and Gibbs Energies 9. Phase Equilibria 10. Solutions I: Liquid-Liquid Solutions 11. Solutions II: Solid-Liquid Solutions 12. Chemical Equilibrium 13. Thermodynamics of Electrochemical Cells 14. Nonequilibrium Thermodynamics Answers to Numerical Problems Illustration Credits Index
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