Transport Processes and Unit Operations
International Edition
Christie J. Geankoplis(Author)
Pearson (Publisher)
3rd Edition
Published on 1. April 1993
Book
Paperback/Softback
928 pages
978-0-13-045253-5 (ISBN)
Article exhausted; check for reprint
Description
Intended for one-year transport phenomena (also called transport processes) and unit operations course. First semester covers fluid mechanics (also called momentum), heat and mass transfer; second semester covers unit operations.
Revision of successful textbook for two-semester (junior/senior) course called transport phenomena (or processes) and with operations. Significant unit changes include the addition of a section on adsorption, chapter on membrane separation, and more complete coverage of fluid mechanics.
Revision of successful textbook for two-semester (junior/senior) course called transport phenomena (or processes) and with operations. Significant unit changes include the addition of a section on adsorption, chapter on membrane separation, and more complete coverage of fluid mechanics.
More details
Edition
3rd edition
Language
English
Place of publication
United States
Publishing group
Pearson Education (US)
Target group
Professional and scholarly
Dimensions
Height: 162 mm
Width: 234 mm
Thickness: 31 mm
Weight
1235 gr
ISBN-13
978-0-13-045253-5 (9780130452535)
Copyright in bibliographic data is held by Nielsen Book Services Limited or its licensors: all rights reserved.
Schweitzer Classification
Other editions
New editions

Christie John Geankoplis
Transport Processes and Separation Process Principles (Includes Unit Operations)
International Edition
Book
02/2012
4th Edition
Pearson
€123.79
Article exhausted; check for reprint
Previous edition
Geankoplis
Transport Process Unit Operations
Book
08/1992
2nd Edition
Prentice-Hall
€40.80
Article exhausted; check different version
Content
I. TRANSPORT PROCESSES: MOMENTUM, HEAT, AND MASS.
1. Introduction to Engineering Principles and Units.
2. Principles of Momentum Transfer and Overall Balances.
3. Principles of Momentum Transfer and Applications.
4. Principles of Steady-State Heat Transfer.
5. Principles of Unsteady-State Heat Transfer.
6. Principles of Mass Transfer.
7. Principles of Unsteady-State and Convective Mass Transfer.
II. UNIT OPERATIONS.
8. Evaporation.
9. Drying of Process Materials.
10. Stage and Continuous Gas-Liquid Separation Processes.
11. Vapor-Liquid Separation Processes.
12. Liquid-Liquid and Liquid-Solid Separation Processes.
13. Membrane Separation Processes.
14. Mechanical-Physical Separation Processes.
III. APPENDICES.
A1. Fundamental Constants and Conversion Factors.
A2. Physical Properties of Water.
A3. Physical Properties of Inorganic and Organic Compounds.
A4. Physical Properties of Foods and Biological Materials.
A5. Properties of Pipes, Tubes, and Screens.
Notation.
Index.
1. Introduction to Engineering Principles and Units.
2. Principles of Momentum Transfer and Overall Balances.
3. Principles of Momentum Transfer and Applications.
4. Principles of Steady-State Heat Transfer.
5. Principles of Unsteady-State Heat Transfer.
6. Principles of Mass Transfer.
7. Principles of Unsteady-State and Convective Mass Transfer.
II. UNIT OPERATIONS.
8. Evaporation.
9. Drying of Process Materials.
10. Stage and Continuous Gas-Liquid Separation Processes.
11. Vapor-Liquid Separation Processes.
12. Liquid-Liquid and Liquid-Solid Separation Processes.
13. Membrane Separation Processes.
14. Mechanical-Physical Separation Processes.
III. APPENDICES.
A1. Fundamental Constants and Conversion Factors.
A2. Physical Properties of Water.
A3. Physical Properties of Inorganic and Organic Compounds.
A4. Physical Properties of Foods and Biological Materials.
A5. Properties of Pipes, Tubes, and Screens.
Notation.
Index.