Thermodynamics

Bewaard in:
Bibliografische gegevens
Hoofdauteurs: Lewis, Gilbert Newton, 1875-1946, Randall, Merle, 1880-1950 (Auteur)
Andere auteurs: Pitzer, Kenneth Sanborn, 1914- (Redacteur), Brewer, Leo, 1919-2005 (Redacteur)
Formaat: Livre papier
Taal:Anglais
Gepubliceerd in: New York ; Toronto (Ont.) ; London [etc.] : Tokyo : McGraw-Hill Book Company ; Kōgakusha Company, Ltd C 1961.
Editie:Second edition, International student edition.
Reeks:McGraw-Hill series in advanced chemistry
Onderwerpen:
Opmerking: Publié en 1923 sous le titre : Thermodynamics and the free energy of chemical substances
Autres localisations: Voir dans le Sudoc
Inhoudsopgave:
  • P. 1
  • Chapter 1. The scope of thermodynamics
  • P. 6
  • Chapter 2. Definitions : the concept of equilibrium
  • P. 19
  • Chapter 3. Conventions and mathematical methods
  • P. 28
  • Chapter 4. The first law of thermodynamics and the concept of energy
  • P. 44
  • Chapter 5. Application of the first law to a a pure homogeneous substance
  • P. 53
  • Chapter 6. Heat capacities of pure substances and heats of reaction
  • P. 75
  • Chapter 7. The second law of thermodynamics and the concept of entropy
  • P. 87
  • Chapter 8. Entropy and probability
  • P. 94
  • Chapter 9. Heat engines, heat pumps, cycles, and flow processes
  • P. 102
  • Chapter 10. The relationship of entropy to other state functions
  • P. 116
  • Chapter 11. The numerical calculation of entropy
  • P. 128
  • Chapter 12. The third law of thermodynamics
  • P. 138
  • Chapter 13. The free energy
  • P. 145
  • Chapter 14. The chemical potential and escaping tendency ; equilibrium between two or more pure phases ; the fugacity
  • P. 158
  • Chapter 15. Standard free-energy functions and equilibrium calculations
  • P. 184
  • Chapter 16. Real gases
  • P. 199
  • Chapter 17. Solutions
  • P. 224
  • Chapter 18. The ideal solution
  • P. 231
  • Chapter 19. The laws of the dilute solution
  • P. 242
  • Chapter 20. The useful functions, activity, activity coefficient, and equilibrium constant
  • P. 280
  • Chapter 21. Nonelectrolyte solutions
  • P. 298
  • Chapter 22. Electrolyte solutions
  • P. 332
  • Chapter 23. Theories of electrolyte solutions
  • P. 349
  • Chapter 24. Galvanic cells and electrode potentials
  • P. 373
  • Chapter 25. Thermal properties of solutions
  • P. 404
  • Chapter 26. Activity coefficients from solid-liquid equilibria
  • P. 419
  • Chapter 27. Thermodynamic properties of ideal gases calculated from spectroscopic and other molecular data
  • P. 449
  • Chapter 28. Irreversible processes near equilibrium ; nonisothermal systems ; steady states
  • P. 470
  • Chapter 29. Surface effects
  • P. 492
  • Chapter 30. Systems involving gravitational or centrifugal fields
  • P. 497
  • Chapter 31. Systems involving electric or magnetic fields
  • P. 515
  • Chapter 32. Estimation of entropies and other thermodynamic quantities
  • P. 532
  • Chapter 33. Vaporization processes
  • P. 551
  • Chapter 34. Multicomponent systems
  • P. 595
  • Chapter 35. Hydrogen and helium at low temperatures
  • P. 605
  • Appendix 1. Properties of normal fluids
  • P. 630
  • Appendix 2. Properties of gaseous solutions
  • P. 635
  • Appendix 3. Translational entropy of an ideal gas
  • P. 640
  • Appendix 4. Data for aqueous electrolyte solutions
  • P. 659
  • Appendix 5. Debye functions for the thermodynamic properties of solids
  • P. 665
  • Appendix 6. Tabular summary of thermodynamic formulas
  • P. 669
  • Appendix 7. Tables of thermodynamic properties
  • P. 687
  • Appendix 8. Electromagnetic work
  • P. 689
  • Appendix 9. Symbols
  • P. 693
  • Appendix 10. Physical constants and numerical factors