R. Byron Bird (Madison University of Wisconsin), Warren E. Stewart (University of Wisconsin-Madison), Edwin N. Lightfoot (University of Wisconsin-Madison)
Introductory Transport Phenomena
R. Byron Bird (Madison University of Wisconsin), Warren E. Stewart (University of Wisconsin-Madison), Edwin N. Lightfoot (University of Wisconsin-Madison)
Introductory Transport Phenomena
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Introductory Transport Phenomena by R. Byron Bird, Warren E. Stewart, Edwin N. Lightfoot, and Daniel Klingenberg is a new introductory textbook based on the classic Bird, Stewart, Lightfoot text, Transport Phenomena. The authors goal in writing this book reflects topics covered in an undergraduate course.
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Introductory Transport Phenomena by R. Byron Bird, Warren E. Stewart, Edwin N. Lightfoot, and Daniel Klingenberg is a new introductory textbook based on the classic Bird, Stewart, Lightfoot text, Transport Phenomena. The authors goal in writing this book reflects topics covered in an undergraduate course.
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Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: John Wiley & Sons Inc
- Seitenzahl: 784
- Erscheinungstermin: 3. Dezember 2014
- Englisch
- Abmessung: 257mm x 206mm x 30mm
- Gewicht: 1442g
- ISBN-13: 9781118775523
- ISBN-10: 111877552X
- Artikelnr.: 38478518
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
- Verlag: John Wiley & Sons Inc
- Seitenzahl: 784
- Erscheinungstermin: 3. Dezember 2014
- Englisch
- Abmessung: 257mm x 206mm x 30mm
- Gewicht: 1442g
- ISBN-13: 9781118775523
- ISBN-10: 111877552X
- Artikelnr.: 38478518
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
R. Byron Bird is a chemical engineer and professor emeritus in the Department of Chemical Engineering at the University of Wisconsin-Madison. He is known for his research in transport phenomena of non-Newtonian fluids, including fluid dynamics of polymers, polymer kinetic theory, and rheology. Warren E. Stewart is the author of Introductory Transport Phenomena, published by Wiley.
0. The Subject of Transport Phenomena
1. Viscosity and the Mechanisms of Momentum Transport
2. Shell Momentum Balances and Velocity Distributions in Laminar Flow
3. The Equations of Change for Isothermal Systems
4. Velocity Distributions in Turbulent Flow
5. Dimensional Analysis for Isothermal Systems
6. Interphase Transport in Isothermal Systems
7. Macroscopic Balances for Isothermal Flow Systems
8. Non-Newtonian Liquids
9. Thermal Conductivity and the Mechanisms of Energy Transport
10. Shell Energy Balances and Temperature Distributions in Solids and
Laminar Flow
11. The Equations of Change for Nonisothermal Systems
12. Temperature Distributions in Turbulent Flow
13. Dimensional Analysis in Nonisothermal Systems
14. Interphase Transport in Nonisothermal Systems
15. Macroscopic Balances for Nonisothermal Systems
16. Energy Transport by Radiation
17. Diffusivity and the Mechanisms of Mass Transport
18. Concentration Distributions in Solids and in Laminar Flow
19. The Equations of Change for Binary Mixtures
20. Concentration Distributions in Turbulent Flow
21. Dimensional Analysis for Flowing Mixtures
22. Interphase Transport in Nonisothermal Mixtures
23. Macroscopic Balances for Multicomponent Systems
24. Other Mechanisms for Mass Transport
1. Viscosity and the Mechanisms of Momentum Transport
2. Shell Momentum Balances and Velocity Distributions in Laminar Flow
3. The Equations of Change for Isothermal Systems
4. Velocity Distributions in Turbulent Flow
5. Dimensional Analysis for Isothermal Systems
6. Interphase Transport in Isothermal Systems
7. Macroscopic Balances for Isothermal Flow Systems
8. Non-Newtonian Liquids
9. Thermal Conductivity and the Mechanisms of Energy Transport
10. Shell Energy Balances and Temperature Distributions in Solids and
Laminar Flow
11. The Equations of Change for Nonisothermal Systems
12. Temperature Distributions in Turbulent Flow
13. Dimensional Analysis in Nonisothermal Systems
14. Interphase Transport in Nonisothermal Systems
15. Macroscopic Balances for Nonisothermal Systems
16. Energy Transport by Radiation
17. Diffusivity and the Mechanisms of Mass Transport
18. Concentration Distributions in Solids and in Laminar Flow
19. The Equations of Change for Binary Mixtures
20. Concentration Distributions in Turbulent Flow
21. Dimensional Analysis for Flowing Mixtures
22. Interphase Transport in Nonisothermal Mixtures
23. Macroscopic Balances for Multicomponent Systems
24. Other Mechanisms for Mass Transport
0. The Subject of Transport Phenomena
1. Viscosity and the Mechanisms of Momentum Transport
2. Shell Momentum Balances and Velocity Distributions in Laminar Flow
3. The Equations of Change for Isothermal Systems
4. Velocity Distributions in Turbulent Flow
5. Dimensional Analysis for Isothermal Systems
6. Interphase Transport in Isothermal Systems
7. Macroscopic Balances for Isothermal Flow Systems
8. Non-Newtonian Liquids
9. Thermal Conductivity and the Mechanisms of Energy Transport
10. Shell Energy Balances and Temperature Distributions in Solids and
Laminar Flow
11. The Equations of Change for Nonisothermal Systems
12. Temperature Distributions in Turbulent Flow
13. Dimensional Analysis in Nonisothermal Systems
14. Interphase Transport in Nonisothermal Systems
15. Macroscopic Balances for Nonisothermal Systems
16. Energy Transport by Radiation
17. Diffusivity and the Mechanisms of Mass Transport
18. Concentration Distributions in Solids and in Laminar Flow
19. The Equations of Change for Binary Mixtures
20. Concentration Distributions in Turbulent Flow
21. Dimensional Analysis for Flowing Mixtures
22. Interphase Transport in Nonisothermal Mixtures
23. Macroscopic Balances for Multicomponent Systems
24. Other Mechanisms for Mass Transport
1. Viscosity and the Mechanisms of Momentum Transport
2. Shell Momentum Balances and Velocity Distributions in Laminar Flow
3. The Equations of Change for Isothermal Systems
4. Velocity Distributions in Turbulent Flow
5. Dimensional Analysis for Isothermal Systems
6. Interphase Transport in Isothermal Systems
7. Macroscopic Balances for Isothermal Flow Systems
8. Non-Newtonian Liquids
9. Thermal Conductivity and the Mechanisms of Energy Transport
10. Shell Energy Balances and Temperature Distributions in Solids and
Laminar Flow
11. The Equations of Change for Nonisothermal Systems
12. Temperature Distributions in Turbulent Flow
13. Dimensional Analysis in Nonisothermal Systems
14. Interphase Transport in Nonisothermal Systems
15. Macroscopic Balances for Nonisothermal Systems
16. Energy Transport by Radiation
17. Diffusivity and the Mechanisms of Mass Transport
18. Concentration Distributions in Solids and in Laminar Flow
19. The Equations of Change for Binary Mixtures
20. Concentration Distributions in Turbulent Flow
21. Dimensional Analysis for Flowing Mixtures
22. Interphase Transport in Nonisothermal Mixtures
23. Macroscopic Balances for Multicomponent Systems
24. Other Mechanisms for Mass Transport