Elementary Principles of Chemical Processes – Richard M. Felder, Ronald W. Rousseau, Lisa G. Bullard – 4th Edition

Descripción

Este libro superventas prepara a los para formular y resolver balances de materia y energía en sistemas de procesos químicos y sienta las bases para cursos posteriores de ingeniería química. El texto proporciona una introducción realista, informativa y positiva a la de la ingeniería química.

Este texto clásico ha brindado a generaciones de aspirantes a ingenieros químicos una base sólida en la disciplina: análisis de de ingeniería, balances de materiales y balances de energía. Richard Felder es un líder mundial reconocido en el campo de la educación en ingeniería y este texto representa toda una vida de estudio y práctica en técnicas de enseñanza efectivas. El texto está en uso en más de 4 de los 5 programas de ingeniería química en los EE.UU.

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  • Part 1 Engineering Problem Analysis

    Chapter 1 What Some Chemical Engineers Do for a Living
    Chapter 2 Introduction to Engineering Calculations
    2.0 Learning Objectives
    2.1 Units and Dimensions
    2.2 Conversion of Units
    2.3 Systems of Units
    2.4 Force and Weight
    2.5 Numerical Calculation and Estimation
    2.6 Dimensional Homogeneity and Dimensionless Quantities
    2.7 Process Data Representation and Analysis
    2.8 Summary
    Problems

    Chapter 3 Processes and Process Variables
    3.0 Learning Objectives
    3.1 Mass and Volume
    3.2 Flow Rate
    3.3 Chemical Composition
    3.4 Pressure
    3.5 Temperature
    3.6 Summary
    Problems

    Part 2 Material Balances

    Chapter 4 Fundamentals of Material Balances
    4.0 Learning Objectives
    4.1 Process Classification
    4.2 Balances
    4.3 Material Balance Calculations
    4.4 Balances on Multiple-Unit Processes
    4.5 Recycle and Bypass
    4.6 Chemical Reaction Stoichiometry
    4.7 Balances on Reactive Processes
    4.8 Combustion Reactions
    4.9 Some Additional Considerations about Chemical Processes
    4.10 Summary
    Problems

    Chapter 5 Single-Phase Systems
    5.0 Learning Objectives
    5.1 Liquid and Solid Densities
    5.2 Ideal Gases
    5.3 Equations of State for Nonideal Gases
    5.4 The Compressibility-Factor Equation of State
    5.5 Summary
    Problems

    Chapter 6 Multiphase Systems
    6.0 Learning Objectives
    6.1 Single-Component Phase Equilibrium
    6.2 The Gibbs Phase Rule
    6.3 Gas–Liquid Systems: One Condensable Component
    6.4 Multicomponent Gas–Liquid Systems
    6.5 Solutions of Solids in Liquids
    6.6 Equilibrium Between Two Liquid Phases
    6.7 Adsorption on Solid Surfaces
    6.8 Summary
    Problems

    Part 3 Energy Balances
    Chapter 7 Energy and Energy Balances
    7.0 Learning Objectives
    7.1 Forms of Energy: The First Law of Thermodynamics
    7.2 Kinetic and Potential Energy
    7.3 Energy Balances on Closed Systems
    7.4 Energy Balances on Open Systems at Steady State
    7.5 Tables of Thermodynamic Data
    7.6 Energy Balance Procedures
    7.7 Mechanical Energy Balances
    7.8 Summary
    Problems

    Chapter 8 Balances on Nonreactive Processes
    8.0 Learning Objectives
    8.1 Elements of Energy Balance Calculations
    8.2 Changes in Pressure at Constant Temperature
    8.3 Changes in Temperature
    8.4 Phase-Change Operations
    8.5 Mixing and Solution
    8.6 Summary
    Problems

    Chapter 9 Balances on Reactive Processes
    9.0 Learning Objectives
    9.1 Heats of Reaction
    9.2 Measurement and Calculation of Heats of Reaction: Hess’s Law
    9.3 Formation Reactions and Heats of Formation
    9.4 Heats of Combustion
    9.5 Energy Balances on Reactive Processes
    9.6 Fuels and Combustion
    9.7 Summary
    Problems

    Chapter 10 Balances on Transient Processes
    10.0 Learning Objectives
    10.1 The General Balance Equation . . . Again
    10.2 Material Balances
    10.3 Energy Balances on Single-Phase Nonreactive Processes
    10.4 Simultaneous Transient Balances
    10.5 Summary
    Problems

    Appendix A Computational Techniques
    A.1 The Method of Least Squares
    A.2 Iterative Solution of Nonlinear Algebraic Equations
    A.3 Numerical Integration

    Appendix B Physical Property Tables
    B.1 Selected Physical Property Data
    B.2 Heat Capacities
    B.3 Vapor Pressure of Water
    B.4 Antoine Equation Constants
    B.5 Properties of Saturated Steam: Temperature Table
    B.6 Properties of Saturated Steam: Pressure Table
    B.7 Properties of Superheated Steam
    B.8 Specific Enthalpies of Selected Gases: SI Units
    B.9 Specific Enthalpies of Selected Gases: U.S. Customary Units
    B.10 Atomic Heat Capacities for Kopp’s Rule
    B.11 Integral Heats of Solution and Mixing at 25°C

    Answers to Test Yourselves
    Answers to Selected Problems
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