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Beschreibung
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 engineeringLiving Example Problems (LEPs) that allow students to rapidly explore the issues and look for optimal solutionsOpen-ended problems that encourage students to use inquiry-based learning to practice creative problem-solving skills About the Web Site [...] The companion Web site offers extensive enrichment opportunities and additional content, including Complete PowerPoint slides for lecture notes for chemical reaction engineering classesLinks to additional software, including Polymath, MATLAB, Wolfram Mathematica, AspenTech, and COMSOL MultiphysicsInteractive learning resources linked to each chapter, including Learning Objectives, Summary Notes, Web Modules, Interactive Computer Games, Computer Simulations and Experiments, Solved Problems, FAQs, and links to LearnChemELiving Example Problems that provide more than 75 interactive simulations, allowing students to explore the examples and ask “what-if ” questionsProfessional Reference Shelf, containing advanced content on reactors, weighted least squares, experimental planning, laboratory reactors, pharmacokinetics, wire gauze reactors, trickle bed reactors, fluidized bed reactors, CVD boat reactors, detailed explanations of key derivations, and moreProblem-solving strategies and insights on creative and critical thinking Register your product at [...] for convenient access to downloads, updates, and/or corrections as they become available.
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 engineeringLiving Example Problems (LEPs) that allow students to rapidly explore the issues and look for optimal solutionsOpen-ended problems that encourage students to use inquiry-based learning to practice creative problem-solving skills About the Web Site [...] The companion Web site offers extensive enrichment opportunities and additional content, including Complete PowerPoint slides for lecture notes for chemical reaction engineering classesLinks to additional software, including Polymath, MATLAB, Wolfram Mathematica, AspenTech, and COMSOL MultiphysicsInteractive learning resources linked to each chapter, including Learning Objectives, Summary Notes, Web Modules, Interactive Computer Games, Computer Simulations and Experiments, Solved Problems, FAQs, and links to LearnChemELiving Example Problems that provide more than 75 interactive simulations, allowing students to explore the examples and ask “what-if ” questionsProfessional Reference Shelf, containing advanced content on reactors, weighted least squares, experimental planning, laboratory reactors, pharmacokinetics, wire gauze reactors, trickle bed reactors, fluidized bed reactors, CVD boat reactors, detailed explanations of key derivations, and moreProblem-solving strategies and insights on creative and critical thinking Register your product at [...] for convenient access to downloads, updates, and/or corrections as they become available.
Über den Autor
H. Scott Fogler was the Ame and Catherine Vennema Professor of Chemical Engineering and the Arthur F. Thurnau Professor at the University of Michigan. He was 2009 President of the American Institute of Chemical Engineers. Fogler chaired ASEE's Chemical Engineering Division, served as director of the American Institute of Chemical Engineers, and earned the Warren K. Lewis Award from AIChE for contributions to chemical engineering education. He received the Chemical Manufacturers Association's National Catalyst Award and the 2010 Malcolm E. Pruitt Award from the Council for Chemical Research. Bryan R. Goldsmith is the Dow Corning Assistant Professor of Chemical Engineering at the University of Michigan, Ann Arbor. He joined Michigan in 2017 after completing a Humboldt Postdoctoral Fellowship at the Fritz Haber Institute of the Max Planck Society in Berlin, Germany. He received his PhD in chemical engineering from the University of California Santa Barbara in 2015. His research lab specializes in atomistic modeling and machine learning to understand and design catalysts for chemical conversion, pollution reduction, and energy generation and storage. He was a recipient of the AIChE 35 under 35 Award and the ACS OpenEye Outstanding Junior Faculty Award. Eranda Nikolla is a professor in the Department of Chemical Engineering at the University of Michigan and is Materials Science Editor of the Journal of Catalysis. She received MS and PhD degrees from the University of Michigan and was a postdoctoral scholar in chemical engineering at the California Institute of Technology from 2009-2011. Her research lab focuses on studying issues related to thermocatalysis and electrocatalysis for energy and chemical conversion and storage. Nirala Singh is an assistant professor of chemical engineering at the University of Michigan. He received a BSE in chemical engineering from the University of Michigan in 2009 and a PhD in chemical engineering from the University of California Santa Barbara in 2015.
Inhaltsverzeichnis
  • 1. Mole Balances
  • 2. Conversion and Reactor Sizing
  • 3. Rate Laws
  • 4. Stoichiometry
  • 5. Isothermal Reactor Design: Conversion
  • 6. Isothermal Reactor Design: Molar Flow Rates
  • 7. Collection and Analysis of Rate Data
  • 8. Multiple Reactions
  • 9. Reaction Mechanisms, Pathways, Bioreactions, and Bioreactors
  • 10. Catalysis and Catalytic Reactors
  • 11. Nonisothermal Reactor Design
  • 12. Steady-State Nonisothermal Reactor Design
  • 13. Unsteady-State Nonisothermal Reactor Design
Details
Erscheinungsjahr: 2017
Fachbereich: Allgemeines
Genre: Chemie, Importe
Rubrik: Naturwissenschaften & Technik
Medium: Taschenbuch
ISBN-13: 9780134663890
ISBN-10: 0134663896
Sprache: Englisch
Einband: Kartoniert / Broschiert
Autor: Fogler, H.
Fogler, H. Scott
Auflage: 2. Auflage
Hersteller: Pearson
Verantwortliche Person für die EU: Pearson, St.-Martin-Str. 82, D-81541 München, salesde@pearson.com
Maße: 254 x 203 x 44 mm
Von/Mit: H. Fogler (u. a.)
Erscheinungsdatum: 19.10.2017
Gewicht: 1,714 kg
Artikel-ID: 133574672