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  • Introduction to Chemical Engineering Thermodynamics

    Introduction to Chemical Engineering Thermodynamics by Smith, J. M.; Van Ness, Hendrick C; Abbott, Michael;

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      • Publisher's listprice GBP 42.99
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    Product details:

    • Edition number 6
    • Publisher McGraw-Hill Higher Education
    • Date of Publication 1 December 2003

    • ISBN 9780070083042
    • Binding Paperback
    • No. of pages816 pages
    • Size 350x870x270 mm
    • Weight 1233 g
    • Language English
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    Long description:

    Introduction to Chemical Engineering Thermodynamics, 6/e, presents comprehensive coverage of the subject of thermodynamics from a chemical engineering viewpoint. The text provides a thorough exposition of the principles of thermodynamics and details their application to chemical processes. The chapters are written in a clear, logically organized manner, and contain an abundance of realistic problems, examples, and illustrations to help students understand complex concepts. New ideas, terms, and symbols constantly challenge the readers to think and encourage them to apply this fundamental body of knowledge to the solution of practical problems.

    The comprehensive nature of this book makes it a useful reference both in graduate courses and for professional practice. The sixth edition continues to be an excellent tool for teaching the subject of chemical engineering thermodynamics to undergraduate students.

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    Table of Contents:

    Preface

    1 Introduction

    2 The First Law and Other Basic Concepts

    3 Volumetric Properties of Pure Fluids

    4 Heat Effects

    5 The Second Law of Thermodynamics

    6 Thermodynamic Properties of Fluids

    7 Applications of Thermodynamics to Flow Processes

    8 Production of Power from Heat

    9 Refrigeration and Liquefaction

    10 Vapor/Liquid Equilbrium: Introduction

    11 Solution Thermodynamics: Theory

    12 Solution Thermodynamics: Applications

    13 Chemical-Reaction Equilibria

    14 Topics in Phase Equilibria

    15 Thermodynamic Analysis of Processes

    16 Introduciton to Molecular Thermodynamics

    Appendixes

    A Conversion Factors and Values of the Gas Constant

    B Properties of Pure Species

    C Heat Capacities and Property Changes of Formation

    D Representative Computer Programs

    E The Lee/Kesler Generalized-Correlation Tables

    F Steam Tables

    G Thermodynamic Diagrams

    H UNIFAC Method

    I Newton's Method

    Author Index

    Subject Index

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