Mathematical modeling in chemical engineering / Anders Rasmuson, Chalmers University of Technology, Gothenberg, Bengt Andersson, Chalmers University of Technology, Gothenberg, Louise Olsson, Chalmers University of Technology, Gothenberg, Ronnie Andersson, Chalmers University of Technology, Gothenberg.
Material type: TextPublisher: United Kingdom ; New York : Cambridge University Press, [2014]Description: x, 183 pages : illustrations ; 25 cmContent type:- text
- unmediated
- volume
- 9781107049697
- 660 23
- TP155.2.M35 R37 2014
Item type | Current library | Call number | Status | Date due | Barcode | |
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Books | Muscat University Library | TP155.2.M35 R37 2014 (Browse shelf(Opens below)) | Available | 000595 | ||
Books | Muscat University Library | TP155.2.M35 R37 2014 (Browse shelf(Opens below)) | Available | 000596 |
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TP155 .T695 2013 Chemical engineering design principles, practice, and economics of plant and process design / | TP155 .T695 2013 Chemical engineering design principles, practice, and economics of plant and process design / | TP155.2.E58 A358 2017 Green Chemistry laboratory manual \ | TP155.2.M35 R37 2014 Mathematical modeling in chemical engineering / | TP155.2.M35 R37 2014 Mathematical modeling in chemical engineering / | TP155.2.M36 L39 2013 Numerical methods for chemical engineers using Excel, VBA, and MATLAB / | TP155.2.M36 L39 2013 Numerical methods for chemical engineers using Excel, VBA, and MATLAB / |
Includes bibliographical references (page 181) and index.
Machine generated contents note: 1. Introduction; 2. Classification; 3. Model formulation; 4. Empirical model building; 5. Strategies for simplifying mathematical models; 6. Numerical methods; 7. Statistical analysis of mathematical models.
"A solid introduction to mathematical modeling for a range of chemical engineering applications, covering model formulation, simplification and validation. It explains how to describe a physical/chemical reality in mathematical language and how to select the type and degree of sophistication for a model. Model reduction and approximation methods are presented, including dimensional analysis, time constant analysis and asymptotic methods. An overview of solution methods for typical classes of models is given. As final steps in model building, parameter estimation and model validation and assessment are discussed. The reader is given hands-on experience of formulating new models, reducing the models and validating the models. The authors assume the knowledge of basic chemical engineering, in particular transport phenomena, as well as basic mathematics, statistics and programming. The accompanying problems, tutorials, and projects include model formulation at different levels, analysis, parameter estimation and numerical solution"-- Provided by publisher.
"The book is a solid introduction to mathematical modelling for a range of chemical engineering applications, covering model formulation, simplification and validation. It explains how to describe a physical/chemical reality in mathematical language and how to select the type and degree of sophistication for a model. Model reduction and approximate methods are presented, including dimensional analysis, time constant analysis and asymptotic methods. An overview of solution methods for typical classes of models is given. As final steps in model building, parameter estimation and model validation and assessment are discussed. The reader is given hands-on experience of formulating new models, reducing the models and validating the models. The authors assume the knowledge of basic chemical engineering, in particular transport phenomena, as well as basic mathematics, statistics and programming. The accompanying problems, tutorials, and projects include model formulation at different levels, analysis, parameter estimation and numerical solution"-- Provided by publisher.
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