Show Summary Details
- Title Pages
- Dedication
- Preface
- Acknowledgements
- 1 Review Of Some Mathematical And Physical Subjects
- 2 Quantum Dynamics Using The Time-Dependent Schrödinger Equation
- 3 An Overview Of Quantum Electrodynamics And Matter–Radiation Field Interaction
- 4 Introduction To Solids And Their Interfaces
- 5 Introduction To Liquids
- 6 Time Correlation Functions
- 7 Introduction To Stochastic Processes
- 8 Stochastic Equations Of Motion
- 9 Introduction To Quantum Relaxation Processes
- 10 The Quantum Mechanical Density Operator And Its Time Evolution: Quantum Dynamics Using The Quantum Liouville Equation
- 11 Linear Response Theory
- 12 The Spin–Boson Model
- 13 Vibrational Energy Relaxation
- 14 Chemical Reactions In Condensed Phases
- 15 Solvation Dynamics
- 16 Electron Transfer Processes
- 17 Electron Transfer and Transmission at Molecule–Metal and Molecule–Semiconductor Interfaces
- 18 Spectroscopy
- Index
Acknowledgements
Acknowledgements
- Source:
- Chemical Dynamics in Condensed Phases
- Author(s):
Abraham Nitzan
- Publisher:
- Oxford University Press
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- Title Pages
- Dedication
- Preface
- Acknowledgements
- 1 Review Of Some Mathematical And Physical Subjects
- 2 Quantum Dynamics Using The Time-Dependent Schrödinger Equation
- 3 An Overview Of Quantum Electrodynamics And Matter–Radiation Field Interaction
- 4 Introduction To Solids And Their Interfaces
- 5 Introduction To Liquids
- 6 Time Correlation Functions
- 7 Introduction To Stochastic Processes
- 8 Stochastic Equations Of Motion
- 9 Introduction To Quantum Relaxation Processes
- 10 The Quantum Mechanical Density Operator And Its Time Evolution: Quantum Dynamics Using The Quantum Liouville Equation
- 11 Linear Response Theory
- 12 The Spin–Boson Model
- 13 Vibrational Energy Relaxation
- 14 Chemical Reactions In Condensed Phases
- 15 Solvation Dynamics
- 16 Electron Transfer Processes
- 17 Electron Transfer and Transmission at Molecule–Metal and Molecule–Semiconductor Interfaces
- 18 Spectroscopy
- Index