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Designed for introductory undergraduate courses in fluid mechanics for chemical engineers, this textbook illustrates the fundamental concepts and analytical strategies using a range of modern applications and worked examples. It includes traditional design calculations and guidance on predicting the flow properties of novel devices and systems.
Master the principles of thermodynamics, and understand their practical real-world applications, with this deep and intuitive undergraduate textbook.
Written for an advanced separation process course in chemical engineering, this textbook provides students with a basic understanding of molecular, macromolecular and particle separation techniques. With a wide range of industrial examples, worked through problems, homework sets and a solutions manual for instructor use, this is the complete textbook package.
Focusing on today's major fuel resources, this book discusses the natural processes by which they formed; their composition and properties; and the ways in which they are converted or upgraded into the forms in commercial use. It is ideal for graduate students and professionals in chemical engineering and energy technology.
With this all-inclusive introduction to polydisperse multiphase flows, you will learn how to use quadrature-based moment methods and design high-order numerical methods that guarantee realizable moment sets. Theory is linked to practice through numerous real-world examples, whilst MATLAB (R) scripts are provided to apply the methods to your own practical problems.
This text allows instructors to teach a course on heat and mass transfer that will equip students with the pragmatic, applied skills required by the chemical industry. This combined presentation of heat and mass transfer allows students to develop a practical understanding, while maintaining mathematical rigour, without extensive mathematical analysis.
This book presents the current state of the art in computational models for turbulent reacting flows, and analyzes carefully the strengths and weaknesses of the various techniques described. The focus is on formulation of practical models as opposed to numerical issues arising from their solution.
This text on transport phenomena is arranged in three parallel parts covering the major topics of momentum, energy, and mass transfer. Each part begins with the theory and is followed by applications. Includes numerous real-world examples and exercises. Intended for first-year graduate engineering students, the book will be equally useful as a reference for researchers.
Process Control, first published in 2002, covers the most essential aspects of process control for a two-semester introductory course. Theory and analysis of process control are well-presented, and MATLAB is employed as a powerful yet approachable computational tool. Each chapter concludes with problem sets, and a custom web site provides MATLAB support.
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