Essentials of Chemical Reaction Engineering 2nd Edition by H. Scott Fogler- Ebook PDF Instant Download/Delivery: 9780134663890, 0134663896
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Product details:
ISBN 10: 0134663896
ISBN 13: 9780134663890
Author: H. Scott Fogler
Today’s Definitive, Undergraduate-Level Introduction to Chemical Reaction Engineering Problem-Solving
For 30 years, H. Scott Fogler’s Elements of Chemical Reaction Engineering has been the #1 selling text for courses in chemical reaction engineering worldwide. Now, in Essentials of Chemical Reaction Engineering, Second Edition, Fogler has distilled this classic into a modern, introductory-level guide specifically for undergraduates. This is the ideal resource for today’s students: learners who demand instantaneous access to information and want to enjoy learning as they deepen their critical thinking and creative problem-solving skills. Fogler successfully integrates text, visuals, and computer simulations, and links theory to practice through many relevant examples.
This updated second edition covers mole balances, conversion and reactor sizing, rate laws and stoichiometry, isothermal reactor design, rate data collection/analysis, multiple reactions, reaction mechanisms, pathways, bioreactions and bioreactors, catalysis, catalytic reactors, nonisothermal reactor designs, and more. Its multiple improvements include a new discussion of activation energy, molecular simulation, and stochastic modeling, and a significantly revamped chapter on heat effects in chemical reactors.
To promote the transfer of key skills to real-life settings, Fogler presents three styles of problems:
- Straightforward problems that reinforce the principles of chemical reaction engineering
- Living Example Problems (LEPs) that allow students to rapidly explore the issues and look for optimal solutions
- Open-ended problems that encourage students to use inquiry-based learning to practice creative problem-solving skills
Table of contents:
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Mole Balances
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Conversion and Reactor Sizing
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Rate Laws
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Stoichiometry
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Isothermal Reactor Design: Conversion
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Isothermal Reactor Design: Moles and Molar Flow Rates
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Collection and Analysis of Rate Data
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Multiple Reactions
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Reaction Mechanisms, Pathways, Bioreactions, and Bioreactors
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Catalysis and Catalytic Reactors
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Nonisothermal Reactor Design: The Steady-State Energy Balance and Adiabatic PFR Applications
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Steady-State Nonisothermal Reactor Design: Flow Reactors with Heat Exchange
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Unsteady-State Nonisothermal Reactor Design
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