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Part 1: Equilibrium 

1: The properties of gases 
2: The first law 
3: The second law 
4: Physical transformations of pure substances 
5: Simple mixtures 
6: Chemical equilibrium 

Part 2: Structure 

7: Quantum theory: introduction and principles 
8: Quantum theory: techniques and applications 
9: Atomic structure and atomic spectra 
10: Molecular structure 
11: Molecular symmetry 
12: Molecular spectroscopy 1: rotational and vibrational spectra 
13: Molecular spectroscopy 2: electronic transitions 
14: Molecular spectroscopy 3: magnetic resonance 
15: Statistical thermodynamics 1: the concepts 
16: Statistical thermodynamics 2: applications 
17: Molecular interactions 
18: Materials 1: soft matter 
19: Materials 2: solids 

Part 3: Change 

20: Molecules in motion 
21: The rates of chemical reactions 
22: Reaction dynamics 
23: Catalysis
   
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PART 1. EQUILIBRIUM
1: THE PROPERTIES OF GASES
2: THE FIRST LAW
3: THE SECOND LAW
4: PHYSICAL TRANSFORMATIONS OF PURE SUBSTANCES
5: SIMPLE MIXTURES
6: CHEMICAL EQUILIBRIUM

PART 2. STRUCTURE
7: QUANTUM THEORY: INTRODUCTION AND PRINCIPLES
8: QUANTUM THEORY: TECHNIQUES AND APPLICATIONS
9: ATOMIC STRUCTURE AND ATOMIC SPECTRA
10: MOLECULAR STRUCTURE
11: MOLECULAR SYMMETRY
12: MOLECULAR SPECTROSCOPY 1: ROTATIONAL AND VIBRATIONAL SPECTRA
13: MOLECULAR SPECTROSCOPY 2: ELECTRONIC TRANSITIONS
14: MOLECULAR SPECTROSCOPY 3: MAGNETIC RESONANCE
15: STATISTICAL THERMODYNAMICS 1: THE CONCEPTS
16: STATISTICAL THERMODYNAMICS 2: APPLICATIONS
17: MOLECULAR INTERACTIONS
18: MATERIALS 1: SOFT MATTER
19: MATERIALS 2: SOLIDS

PART 3. CHANGE
20: MOLECULES IN MOTION
21: THE RATES OF CHEMICAL REACTIONS
22: REACTION DYNAMICS
23: CATALYSIS
   
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