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    • -10% student

    Felder's Elementary Principles of Chemical Processes, Global Edition

    AvRichard M. Felder,Ronald W. Rousseau

    Häftad, Engelska, 2016

    769 kr

    . Fri frakt över 249 kr.

    Beskrivning

    Felder's Elementary Principles of Chemical Processes prepares students to formulate and solve material and energy balances in chemical process systems and lays the foundation for subsequent courses in chemical engineering. The text provides a realistic, informative, and positive introduction to the practice of chemical engineering. This classic text has provided generations of aspiring chemical engineers with a solid foundation in the discipline – engineering problem analysis, material balances and energy balances.Richard Felder is a recognized global leader in the field of engineering education and this text embodies a lifetime of study and practice in effective teaching techniques.The text is in use at more than 4 out of 5 chemical engineering programs in the US.

    Produktinformation

    • Utgivningsdatum:2016-11-04
    • Mått:204 x 255 x 16 mm
    • Vikt:900 g
    • Format:Häftad
    • Språk:Engelska
    • Antal sidor:528
    • Upplaga:4
    • Förlag:John Wiley & Sons Inc
    • ISBN:9781118092392

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    Utforska kategorier

    • Tillverkningsteknik inom Naturvetenskap och teknik

    Innehållsförteckning

    • About the Authors iiiPreface to the Fourth Edition ivNotes to Instructors vDigital Resources and WileyPLUS viPostscript: Introduction to an Author viiNomenclature viiiGlossary of Chemical Process Terms xPART 1 Engineering Problem Analysis 1CHAPTER 1 What Some Chemical Engineers Do for a Living 3CHAPTER 2 Introduction to Engineering Calculations 52.0 Learning Objectives 52.1 Units and Dimensions 62.2 Conversion of Units 72.3 Systems of Units 82.4 Force and Weight 102.5 Numerical Calculation and Estimation 122.6 Dimensional Homogeneity and Dimensionless Quantities 192.7 Process Data Representation and Analysis 212.8 Summary 30CHAPTER 3 Processes and Process Variables 353.0 Learning Objectives 353.1 Mass and Volume 363.2 Flow Rate 383.3 Chemical Composition 403.4 Pressure 473.5 Temperature 543.6 Summary 57PART 2 Material Balances 67CHAPTER 4 Fundamentals of Material Balances 694.0 Learning Objectives 694.1 Process Classification 704.2 Balances 714.3 Material Balance Calculations 754.4 Balances on Multiple-Unit Processes 944.5 Recycle and Bypass 1004.6 Chemical Reaction Stoichiometry 1074.7 Balances on Reactive Processes 1184.8 Combustion Reactions 1394.9 Some Additional Considerations about Chemical Processes 1474.10 Summary 150CHAPTER 5 Single-Phase Systems 1605.0 Learning Objectives 1615.1 Liquid and Solid Densities 1625.2 Ideal Gases 1645.3 Equations of State for Nonideal Gases 1725.4 The Compressibility-Factor Equation of State 1795.5 Summary 186CHAPTER 6 Multiphase Systems 1956.0 Learning Objectives 1976.1 Single-Component Phase Equilibrium 1986.2 The Gibbs Phase Rule 2046.3 Gas–Liquid Systems: One Condensable Component 2066.4 Multicomponent Gas–Liquid Systems 2126.5 Solutions of Solids in Liquids 2216.6 Equilibrium between Two Liquid Phases 2296.7 Adsorption on Solid Surfaces 2336.8 Summary 236PART 3 Energy Balances 253CHAPTER 7 Energy and Energy Balances 2557.0 Learning Objectives 2567.1 Forms of Energy: The First Law of Thermodynamics 2577.2 Kinetic and Potential Energy 2597.3 Energy Balances on Closed Systems 2607.4 Energy Balances on Open Systems at Steady State 2627.5 Tables of Thermodynamic Data 2677.6 Energy Balance Procedures 2727.7 Mechanical Energy Balances 2757.8 Summary 280CHAPTER 8 Balances on Nonreactive Processes 2918.0 Learning Objectives 2918.1 Elements of Energy Balance Calculations 2928.2 Changes in Pressure at Constant Temperature 3008.3 Changes in Temperature 3018.4 Phase-Change Operations 3138.5 Mixing and Solution 3328.6 Summary 343CHAPTER 9 Balances on Reactive Processes 3639.0 Learning Objectives 3649.1 Heats of Reaction 3649.2 Measurement and Calculation of Heats of Reaction: Hess's Law 3699.3 Formation Reactions and Heats of Formation 3719.4 Heats of Combustion 3739.5 Energy Balances on Reactive Processes 3749.6 Fuels and Combustion 3899.7 Summary 399CHAPTER 10 Balances on Transient Processes 41610.0 Learning Objectives 41610.1 The General Balance Equation . . . Again 41610.2 Material Balances 42110.3 Energy Balances on Single-Phase Nonreactive Processes 42810.4 Simultaneous Transient Balances 43310.5 Summary 436APPENDIX A Computational Techniques 443A.1 The Method of Least Squares 443A.2 Iterative Solution of Nonlinear Algebraic Equations 446A.3 Numerical Integration 459APPENDIX B Physical Property Tables 463B.1 Selected Physical Property Data 464B.2 Heat Capacities 471B.3 Vapor Pressure of Water 474B.4 Antoine Equation Constants 476B.5 Properties of Saturated Steam: Temperature Table 478B.6 Properties of Saturated Steam: Pressure Table 480B.7 Properties of Superheated Steam 486B.8 Specific Enthalpies of Selected Gases: SI Units 488B.9 Specific Enthalpies of Selected Gases: U.S. Customary Units 488B.10 Atomic Heat Capacities for Kopp's Rule 489B.11 Integral Heats of Solution and Mixing at 25°C 489Answers to Test Yourselves 490Answers to Selected Problems 498Index 500