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Thermodynamics: Fundamentals and Applications is a 2005 text for a first graduate course in chemical engineering.
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Thermodynamics: Fundamentals and Applications is a 2005 text for a first graduate course in chemical engineering.
Produktdetails
- Produktdetails
- Verlag: Cambridge University Press
- Seitenzahl: 674
- Erscheinungstermin: 2. Februar 2011
- Englisch
- Abmessung: 244mm x 170mm x 36mm
- Gewicht: 1143g
- ISBN-13: 9780521588188
- ISBN-10: 0521588189
- Artikelnr.: 24282744
- Verlag: Cambridge University Press
- Seitenzahl: 674
- Erscheinungstermin: 2. Februar 2011
- Englisch
- Abmessung: 244mm x 170mm x 36mm
- Gewicht: 1143g
- ISBN-13: 9780521588188
- ISBN-10: 0521588189
- Artikelnr.: 24282744
Introduction
Part I. The Basics: 1. Primitives
2. The first and second laws
3. Fundamental relations
Part II. Single-Phase Systems: 4. Properties relative to ideal gases
5. Properties relative to ideal solutions
6. Relations among relations
Part III. Multiphase and Reacting Systems: 7. Transfers, transformations, and equilibria
8. Criteria for observability
9. Phase diagrams for real systems
Part IV. Engineering Calculations: 10. Options for equilibrium calculations
11. Elementary computational procedures
12. Selected applications
Afterword
Appendices: A. Tools from the calculus
B. Elements of linear algebra
C. Solutions to cubic equations
D. Vapor pressures of selected fluids
E. Model parameters for G excess
F. A stability condition for binaries
G. Notation in variational calculus
H. Triangular diagrams
I. Lagrange multipliers
J. NRTL models
K. Simple algorithms for binary VLLE
Notation
Index.
Part I. The Basics: 1. Primitives
2. The first and second laws
3. Fundamental relations
Part II. Single-Phase Systems: 4. Properties relative to ideal gases
5. Properties relative to ideal solutions
6. Relations among relations
Part III. Multiphase and Reacting Systems: 7. Transfers, transformations, and equilibria
8. Criteria for observability
9. Phase diagrams for real systems
Part IV. Engineering Calculations: 10. Options for equilibrium calculations
11. Elementary computational procedures
12. Selected applications
Afterword
Appendices: A. Tools from the calculus
B. Elements of linear algebra
C. Solutions to cubic equations
D. Vapor pressures of selected fluids
E. Model parameters for G excess
F. A stability condition for binaries
G. Notation in variational calculus
H. Triangular diagrams
I. Lagrange multipliers
J. NRTL models
K. Simple algorithms for binary VLLE
Notation
Index.
Introduction
Part I. The Basics: 1. Primitives
2. The first and second laws
3. Fundamental relations
Part II. Single-Phase Systems: 4. Properties relative to ideal gases
5. Properties relative to ideal solutions
6. Relations among relations
Part III. Multiphase and Reacting Systems: 7. Transfers, transformations, and equilibria
8. Criteria for observability
9. Phase diagrams for real systems
Part IV. Engineering Calculations: 10. Options for equilibrium calculations
11. Elementary computational procedures
12. Selected applications
Afterword
Appendices: A. Tools from the calculus
B. Elements of linear algebra
C. Solutions to cubic equations
D. Vapor pressures of selected fluids
E. Model parameters for G excess
F. A stability condition for binaries
G. Notation in variational calculus
H. Triangular diagrams
I. Lagrange multipliers
J. NRTL models
K. Simple algorithms for binary VLLE
Notation
Index.
Part I. The Basics: 1. Primitives
2. The first and second laws
3. Fundamental relations
Part II. Single-Phase Systems: 4. Properties relative to ideal gases
5. Properties relative to ideal solutions
6. Relations among relations
Part III. Multiphase and Reacting Systems: 7. Transfers, transformations, and equilibria
8. Criteria for observability
9. Phase diagrams for real systems
Part IV. Engineering Calculations: 10. Options for equilibrium calculations
11. Elementary computational procedures
12. Selected applications
Afterword
Appendices: A. Tools from the calculus
B. Elements of linear algebra
C. Solutions to cubic equations
D. Vapor pressures of selected fluids
E. Model parameters for G excess
F. A stability condition for binaries
G. Notation in variational calculus
H. Triangular diagrams
I. Lagrange multipliers
J. NRTL models
K. Simple algorithms for binary VLLE
Notation
Index.