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Transport Processes and Separation Process Principles (Includes Unit Operations)

Transport Processes and Separation Process Principles (Includes Unit Operations)

Transport Processes and Separation Process Principles (Includes Unit Operations)
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Transport Processes and Separation Process Principles (Includes Unit Operations) Hardback - 2003

by Geankoplis, Christie

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Details

  • Title Transport Processes and Separation Process Principles (Includes Unit Operations)
  • Author Geankoplis, Christie
  • Binding Hardback
  • Edition 4th
  • Condition Used - Good
  • Pages 1056
  • Volumes 1
  • Language ENG
  • Publisher Pearson, Lebanon, Indiana, U.s.a.
  • Publication date 2003
  • Bookseller's Inventory # ANAIS-013101367X
  • ISBN 9780131013674 / 013101367X
  • Weight 3.64 lbs (1.65 kg)
  • Dimensions 9.74 x 7.38 x 1.77 in (24.74 x 18.75 x 4.50 cm)
  • Size 9.5X6.5X1.5
  • Category Technology & Industrial Arts
  • Library of Congress subjects Transport theory
  • Library of Congress Catalogue Number 2002153320
  • Dewey Decimal Code 660.284
  • Quantity available 1

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Summary

In Transport Processes and Separation Process Principles, Fourth Edition, author Christie John Geankoplis offers a unified and fully updated treatment of momentum transfer, heat transfer, mass transfer, and separation processes. Enhancements to this edition include a more thorough coverage of transport processes, plus new or expanded coverage of separation process applications, fluidized beds, non-Newtonian fluids, membrane separation processes and gas-membrane theory, and much more. The book contains 240+ example problems and 550+ homework problems.

Reader reviews for Transport Processes and Separation Process Principles (Includes Unit Operations)

From the publisher

In Transport Processes and Separation Process Principles, Fourth Edition, author Christie John Geankoplis offers a unified and fully updated treatment of momentum transfer, heat transfer, mass transfer, and separation processes. Enhancements to this edition include a more thorough coverage of transport processes, plus new or expanded coverage of separation process applications, fluidized beds, non-Newtonian fluids, membrane separation processes and gas-membrane theory, and much more. The book contains 240+ example problems and 550+ homework problems.

From the rear cover

The comprehensive, unified, up-to-date guide to transport and separation processes

Today, chemical engineering professionals need a thorough understanding of momentum, heat, and mass transfer processes, as well as separation processes. Transport Processes and Separation Process Principles, Fourth Edition offers a unified and up-to-date treatment of all these topics. Thoroughly updated to reflect the field's latest methods and applications, it covers both fundamental principles and practical applications.

Part 1 covers the essential principles underlying transport processes: momentum transfer; steady-state and unsteady-state heat transfer; and mass transfer, including both unsteady-state and convective mass transfer. Part 2 covers key separation processes, including evaporation, drying, humidification, absorption, distillation, adsorption, ion exchange, extraction, leaching, crystallization, dialysis, gas membrane separation, reverse osmosis, filtration, ultrafiltration, microfiltration, settling, centrifugal separation, and more. This edition's extensive updates and enhancements include:

  • A more thorough coverage of momentum, heat, and mass transport processes
  • Detailed new coverage of separation process applications
  • Greatly expanded coverage of momentum transfer, including fluidized beds and non-Newtonian fluids
  • More detailed discussions of mass transfer, absorption, distillation, liquid-liquid extraction, and crystallization
  • Extensive new coverage of membrane separation processes and gas-membrane theory

Transport Processes and Separation Process Principles, Fourth Edition also features more than 240 example problems and over 550 homework problems reflecting the field's current methods and applications.

About the author

CHRISTIE JOHN GEANKOPLIS is a Professor of Chemical Engineering and Materials Science at the University of Minnesota. His current research interests involve transport processes, biochemical reactor engineering, mass transfer in liquid solutions, and diffusion and/or reaction in porous solids. He holds a Ph.D. in Chemical Engineering from the University of Pennsylvania.

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