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Index
Cover Page Title Page Copyright Page Contents Introduction Chapter 1: Matter and Its Phases
General Considerations System Variables
The Phase Rule Phase Diagrams
Chapter 2: Properties of Gases
Kinetic-Molecular Picture Numerical Magnitudes
Intermolecular Separation and Average Speed Mean Free Path and Collision Rate Molecular Sizes Summary of Numerical Magnitudes
Free-Molecule Gas Continuity of Gaseous and Liquid States Behaviour and Properties
Equilibrium Properties Transport Properties
Chapter 3: Kinetic Theory of Gases
Ideal Gas
Pressure Effusion Thermal Transpiration Viscosity Thermal Conductivity Diffusion and Thermal Diffusion Boltzmann Equation
Deviations from the Ideal Model
Equation of State Transport Properties
Chapter 4: Properties of Liquids
Transitions Between States of Matter Behaviour of Pure Liquids
Phase Diagram of a Pure Substance Representative Values of Phase-Diagram Parameters Behaviour of Substances Near Critical and Triple Points Surface Tension Molecular Structure of Liquids Speed of Sound and Electric Properties
Chapter 5: Liquid Solutions and Solubility
Classes of Solutions
Electrolytes and Nonelectrolytes Weak Electrolytes Endothermic and Exothermic Solutions
Properties of Solutions
Composition Ratios Equilibrium Properties Colligative Properties Transport Properties in Solutions
Thermodynamics and Intermolecular Forces in Solutions
Energy Considerations Effects of Molecular Structure Molecular Structure and Charge Distribution Effects of Chemical Interactions
Theories of Solutions
Activity Coefficients and Excess Functions Regular Solutions Athermal Solutions Associated and Solvated Solutions Solutions of Electrolytes
Solubilities of Solids and Gases
Chapter 6: Crystalline Solids and Liquid Crystals
Basic Units of Solids Long- and Short-Range Order Categories of Crystals Structure
The Unit Cell Structures of Metals Structures of Nonmetallic Elements Structures of Binary Crystals Alloys Crystal Defects Determination of Crystal Structures
Types of Bonds
Ionic Bonds Covalent Bonds Metallic Bonds Molecular Binding Hydrogen Bonding
Crystal Growth
Vapour Growth Growth from Solution Growth from the Melt Dendritic Growth
Liquid Crystals
Structure and Symmetry Optical Properties
Chapter 7: Amorphous Solids and Quasicrystals
Amorphous Solids
Distinction Between Crystalline and Amorphous Solids Preparation of Amorphous Solids Atomic-Scale Structure Properties of Oxide Glasses Properties and Applications of Amorphous Solids
Quasicrystals
Structure and Symmetry Properties
Chapter 8: Plasma
The Development of Plasma Physics Plasma Oscillations and Parameters Basic Plasma Physics
Plasma Formation Methods of Describing Plasma Phenomena Determination of Plasma Variables Waves in Plasmas Applications of Plasmas
Natural Plasmas
Extraterrestrial Forms Solar-Terrestrial Forms
Chapter 9: Clusters
Comparison with Bulk Matter Comparison with Molecules Methods of Study
Preparation of Clusters Ionization and Sorting of Clusters Computer Simulation of Cluster Behaviour
Structure
Clusters with Icosahedral Structures Clusters of Simple Metal Atoms Network Structures
Physical Properties
Liquid and Solid Phases Electric, Magnetic, and Optical Properties Chemical Properties
Conclusion
Glossary Bibliography Index
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