书籍目录
- Fundamental Concepts of Thermodynamics
- Heat, Work, Internal Energy, Enthalpy, and the First Law of Thermodynamics
- The Importance of State Functions: Internal Energy and Enthalpy
- Thermochemistry
- Entropy and the Second and Third Laws of Thermodynamics
- Chemical Equilibrium
- The Properties of Real Gases
- Phase Diagrams and the Relative Stability of Solids, Liquids, and Gases
- Ideal and Real Solutions
- Electrolyte Solutions
- Electrochemical Cells, Batteries, and Fuel Cells
- From Classical to Quantum Mechanics
- The Schrödinger Equation
- The Quantum Mechanical Postulates
- Using Quantum Mechanics on Simple Systems
- The Particle in the Box and the Real World
- Commuting and Noncommuting Operators and the Surprising Consequences of Entanglement
- A Quantum Mechanical Model for the Vibration and Rotation of Molecules
- The Vibrational and Rotational Spectroscopy of Diatomic Molecules
- The Hydrogen Atom
- Many-Electron Atoms
- Quantum States for Many-Electron Atoms and Atomic Spectroscopy
- The Chemical Bond in Diatomic Molecules
- Molecular Structure and Energy Levels for Polyatomic Molecules
- Electronic Spectroscopy
- Computational Chemistry
- Molecular Symmetry
- Nuclear Magnetic Resonance Spectroscopy
- Probability
- The Boltzmann Distribution
- Ensemble and Molecular Partition Functions
- Statistical Thermodynamics
- Kinetic Theory of Gases
- Transport Phenomena
- Elementary Chemical Kinetics
- Complex Reaction Mechanisms
书籍简介
- Fundamental Concepts of Thermodynamics
- Heat, Work, Internal Energy, Enthalpy, and the First Law of Thermodynamics
- The Importance of State Functions: Internal Energy and Enthalpy
- Thermochemistry
- Entropy and the Second and Third Laws of Thermodynamics
- Chemical Equilibrium
- The Properties of Real Gases
- Phase Diagrams and the Relative Stability of Solids, Liquids, and Gases
- Ideal and Real Solutions
- Electrolyte Solutions
- Electrochemical Cells, Batteries, and Fuel Cells
- From Classical to Quantum Mechanics
- The Schrödinger Equation
- The Quantum Mechanical Postulates
- Using Quantum Mechanics on Simple Systems
- The Particle in the Box and the Real World
- Commuting and Noncommuting Operators and the Surprising Consequences of Entanglement
- A Quantum Mechanical Model for the Vibration and Rotation of Molecules
- The Vibrational and Rotational Spectroscopy of Diatomic Molecules
- The Hydrogen Atom
- Many-Electron Atoms
- Quantum States for Many-Electron Atoms and Atomic Spectroscopy
- The Chemical Bond in Diatomic Molecules
- Molecular Structure and Energy Levels for Polyatomic Molecules
- Electronic Spectroscopy
- Computational Chemistry
- Molecular Symmetry
- Nuclear Magnetic Resonance Spectroscopy
- Probability
- The Boltzmann Distribution
- Ensemble and Molecular Partition Functions
- Statistical Thermodynamics
- Kinetic Theory of Gases
- Transport Phenomena
- Elementary Chemical Kinetics
- Complex Reaction Mechanisms
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