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Chemical Reaction Engineering : Beyond the Fundamentals by L.K. Doraiswamy and Deniz Uner

By: Contributor(s): Material type: TextTextPublication details: Boca Raton: CRP Press, Taylor & Francis Group 2014Description: xlvi, 502p. HPISBN:
  • 9781439831229
Subject(s): DDC classification:
  • 660  D69C
Summary: Chemical Reaction Engineering: Beyond the Fundamentals covers basic concepts as well as complexities of chemical reaction engineering, including novel techniques for process intensification. The book is divided into three parts: Fundamentals Revisited, Building on Fundamentals, and Beyond the Fundamentals. Part I: Fundamentals Revisited reviews the salient features of an undergraduate course, introducing concepts essential to reactor design, such as mixing, unsteady-state operations, multiple steady states, and complex reactions.
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Holdings
Item type Home library Collection Call number Status Date due Barcode Item holds
TextBook S. R. Ranganathan Learning Hub General Section General Section 660 D69C (Browse shelf(Opens below)) Available 13261
TextBook S. R. Ranganathan Learning Hub General Section General Section 660 D69C (Browse shelf(Opens below)) Available 13262
TextBook S. R. Ranganathan Learning Hub General Section General Section 660 D69C (Browse shelf(Opens below)) Available 13263
TextBook S. R. Ranganathan Learning Hub General Section General Section 660 D69C (Browse shelf(Opens below)) Available 13264
TextBook S. R. Ranganathan Learning Hub General Section General Section 660 D69C (Browse shelf(Opens below)) Available 13265
TextBook S. R. Ranganathan Learning Hub General Section General Section 660 D69C (Browse shelf(Opens below)) Available 13266
Total holds: 0

Chemical Reaction Engineering: Beyond the Fundamentals covers basic concepts as well as complexities of chemical reaction engineering, including novel techniques for process intensification. The book is divided into three parts: Fundamentals Revisited, Building on Fundamentals, and Beyond the Fundamentals. Part I: Fundamentals Revisited reviews the salient features of an undergraduate course, introducing concepts essential to reactor design, such as mixing, unsteady-state operations, multiple steady states, and complex reactions.

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