Basic principles and calculations in chemical engineering / David M. Himmelblau, James B. Riggs.  (Text) (Text)

Himmelblau, David Mautner, 1923-
Riggs, James B
Call no.: TP151 .H56 2013Series: Prentice Hall international series in the physical and chemical engineering sciencesPublication: Upper Saddle River, N.J. : Prentice Educational International, c2013Edition: 8th ed., [international ed.]Description: xx, 706 p. : illNotes: With 1 computer optical disc and 1 folded table. Kept in the special collection.; Includes index.ISBN: 9780132835565; 0132835568; 9780132346603 (CD-ROM); 0132346605 (CD-ROM)Subject(s): Chemical engineering -- TablesLOC classification: TP151 | .H56 2013
Contents:1. What are chemical engineering and bioengineering? -- 2. Introductory concepts -- 3. Material balances -- 4. Material balances without reaction -- 5. Material balances involving reactions -- 6. Material balances for multi-unit systems -- 7. Ideal and real gases -- 8. Multiphase equilibrium -- 9. Energy balances -- 10. Energy balances: how to account for chemical reaction -- 11. Humidity (psychrometric) charts and their use -- Material on the CD-ROM -- 12. Analysis of the degree of freedom in steady-state processes -- 13. Heats of solution and mixing -- 14. The mechanical energy balance -- 15. Liquids and gases in equilibrium with solids -- 16. Solving material and energy balances -- 17. Unsteady-state material and energy balances.
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With 1 computer optical disc and 1 folded table. Kept in the special collection.

Includes index.

1. What are chemical engineering and bioengineering? -- 2. Introductory concepts -- 3. Material balances -- 4. Material balances without reaction -- 5. Material balances involving reactions -- 6. Material balances for multi-unit systems -- 7. Ideal and real gases -- 8. Multiphase equilibrium -- 9. Energy balances -- 10. Energy balances: how to account for chemical reaction -- 11. Humidity (psychrometric) charts and their use -- Material on the CD-ROM -- 12. Analysis of the degree of freedom in steady-state processes -- 13. Heats of solution and mixing -- 14. The mechanical energy balance -- 15. Liquids and gases in equilibrium with solids -- 16. Solving material and energy balances -- 17. Unsteady-state material and energy balances.

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