Introduction to chemical engineering thermodynamics / J. M. Smith, Late Professor of Chemical Engineering, University of California, Davis, H. C. Van Ness, Late Professor of Chemical Engineering, Rensselaer Polytechnic Institute, M. M. Abbott, Late Professor of Chemical Engineering, Rensselaer Polytechnic Institute, M. T. Swihart, UB Distinguished Professor of Chemical and Biological Engineering, University at Buffalo, The State University of New York.
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Item type | Current library | Call number | Copy number | Status | Date due | Barcode |
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KsTU Library Reference | TP155.2.T45 S58 2022 (Browse shelf(Opens below)) | 1 | Available | 114281 | |
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KsTU Library General Stacks | TP155.2.T45 S58 2022 (Browse shelf(Opens below)) | 2 | Available | 112946 |
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TP155.2.T45 .den 2002 Physical and chemical equilibrium for chemical engineers / | TP155.2.T45 .den 2002 Physical and chemical equilibrium for chemical engineers / | TP155.2.T45 .smi 2005 Introduction to chemical engineering thermodynamics. | TP155.2.T45 S58 2022 Introduction to chemical engineering thermodynamics / | TP155.5 Fundamentals of process safety engineering / | TP 155.5 CRO 2019 Chemical process safety : fundamentals with applications / | TP155.5 .pet 2003 Plant design and economics for chemical engineers. |
Includes index.
"Thermodynamics, a key component of many fields of science and engineering, is based on laws of universal applicability. However, the most important applications of those laws, and the materials and processes of greatest concern, differ from one branch of science or engineering to another. Thus, we believe there is value in presenting this material from a chemical-engineering perspective, focusing on the application of thermodynamic principles to materials and processes most likely to be encountered by chemical engineers"-- Provided by publisher.
Ages 18+ McGraw-Hill Education
Grades 10-12 McGraw-Hill Education
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