Fundamentals of Inorganic Glasses
Autor Arun K. Varshneya, John C. Mauroen Limba Engleză Paperback – 9 mai 2019
- Clearly develops fundamental concepts and the basics of glass science and glass chemistry
- Provides a comprehensive discussion of the composition, structure and properties of inorganic glasses
- Features a discussion of the emerging applications of glass, including applications in energy, environment, pharmaceuticals, and more
- Concludes chapters with problem sets and suggested readings to facilitate self-study
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Specificații
ISBN-13: 9780128162255
ISBN-10: 0128162252
Pagini: 753
Dimensiuni: 152 x 229 x 37 mm
Greutate: 0.99 kg
Ediția:3
Editura: ELSEVIER SCIENCE
ISBN-10: 0128162252
Pagini: 753
Dimensiuni: 152 x 229 x 37 mm
Greutate: 0.99 kg
Ediția:3
Editura: ELSEVIER SCIENCE
Public țintă
Upper level undergraduate and professionals working in inorganic glasses and inorganic chemistry, as well as researchers working with glass in related fields of ceramic engineering, chemical engineering, mechanical engineering, physics, chemistry, and geosciencesCuprins
1. Introduction
2. Fundamentals of the Glassy State
3. Glass Formation Principles
4. Glass Microstructure: Phase Separation and Liquid Immiscibility
5. Glass Compositions and Structures
6. Composition-Structure-Property Relationship Principles
7. Density and Molar Volume
8. Elastic Properties and Microhardness of Glass
9. The Viscosity of Glass
10. Thermal Expansion of Glass
11. Heat Capacity of Glass
12. Thermal Conductivity and Acoustic Properties of Glass
13. Glass Transition Range Behavior
14. Permeation, Diffusion, and Ionic Conduction in Glass
15. Dielectric Properties
16. Electronic Conduction
17. Chemical Durability
18. Strength and Toughness
19. Optical Properties
20. Glass Surfaces
21. Modeling of Glass
22. Fundamentals of Inorganic Glass Making
23. Emerging Applications of Glass
2. Fundamentals of the Glassy State
3. Glass Formation Principles
4. Glass Microstructure: Phase Separation and Liquid Immiscibility
5. Glass Compositions and Structures
6. Composition-Structure-Property Relationship Principles
7. Density and Molar Volume
8. Elastic Properties and Microhardness of Glass
9. The Viscosity of Glass
10. Thermal Expansion of Glass
11. Heat Capacity of Glass
12. Thermal Conductivity and Acoustic Properties of Glass
13. Glass Transition Range Behavior
14. Permeation, Diffusion, and Ionic Conduction in Glass
15. Dielectric Properties
16. Electronic Conduction
17. Chemical Durability
18. Strength and Toughness
19. Optical Properties
20. Glass Surfaces
21. Modeling of Glass
22. Fundamentals of Inorganic Glass Making
23. Emerging Applications of Glass