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Transport Processes and Separation Process Principles (Includes Unit Operations)

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Item specifics

Condition
Good: A book that has been read, but is in good condition. Minimal damage to the book cover eg. ...
Subject
Chemical & Biochemical, Physics / Mathematical & Computational
ISBN
9780131013674
Subject Area
Technology & Engineering, Science
Publication Name
Transport Processes and Separation Process Principles (Includes Unit Operations)
Item Length
9.5 in
Publisher
Pearson Education
Publication Year
2003
Type
Textbook
Format
Hardcover
Language
English
Item Height
1.7 in
Author
Christie Geankoplis
Features
Revised
Item Width
7.2 in
Item Weight
60 Oz
Number of Pages
1056 Pages

About this product

Product Information

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.

Product Identifiers

Publisher
Pearson Education
ISBN-10
013101367x
ISBN-13
9780131013674
eBay Product ID (ePID)
11038270428

Product Key Features

Author
Christie Geankoplis
Publication Name
Transport Processes and Separation Process Principles (Includes Unit Operations)
Format
Hardcover
Language
English
Features
Revised
Subject
Chemical & Biochemical, Physics / Mathematical & Computational
Publication Year
2003
Type
Textbook
Subject Area
Technology & Engineering, Science
Number of Pages
1056 Pages

Dimensions

Item Length
9.5 in
Item Height
1.7 in
Item Width
7.2 in
Item Weight
60 Oz

Additional Product Features

Edition Number
4
LCCN
2002-153320
Lc Classification Number
Tp156.T7g4 2003
Edition Description
Revised Edition
Table of Content
Preface. I. TRANSPORT PROCESSES: MOMENTUM, HEAT, AND MASS. 1. Introduction to Engineering Principles and Units. Classification of Transport Processes and Separation Processes (Unit Operations). SI System of Basic Units Used in This Text and Other Systems. Methods of Expressing Temperatures and Compositions. Gas Laws and Vapor Pressure. Conservation of Mass and Material Balances. Energy and Heat Units. Conservation of Energy and Heat Balances. Numerical Methods for Integration. 2. Principles of Momentum Transfer and Overall Balances. Introduction. Fluid Statics. General Molecular Transport Equation for Momentum, Heat, and Mass Transfer. Viscosity of Fluids. Types of Fluid Flow and Reynolds Number. Overall Mass Balance and Continuity Equation. Overall Energy Balance. Overall Momentum Balance. Shell Momentum Balance and Velocity Profile in Laminar Flow. Design Equations for Laminar and Turbulent Flow in Pipes. Compressible Flow of Gases. 3. Principles of Momentum Transfer and Applications. Flow Past Immersed Objects and Packed and Fluidized Beds. Measurement of Flow of Fluids. Pumps and Gas-Moving Equipment. Agitation and Mixing of Fluids and Power Requirements. Non-Newtonian Fluids. Differential Equations of Continuity. Differential Equations of Momentum Transfer or Motion. Use of Differential Equations of Continuity and Motion. Other Methods for Solution of Differential Equations of Motion. Boundary-Layer Flow and Turbulence. Dimensional Analysis in Momentum Transfer. 4. Principles of Steady-State Heat Transfer. Introduction and Mechanisms of Heat Transfer. Conduction Heat Transfer. Conduction Through Solids in Series. Steady-State Conduction and Shape Factors. Forced Convection Heat Transfer Inside Pipes. Heat Transfer Outside Various Geometries in Forced Convection. Natural Convection Heat Transfer. Boiling and Condensation. Heat Exchangers. Introduction to Radiation Heat Transfer. Advanced Radiation Heat-Transfer Principles. Heat Transfer of Non-Newtonian Fluids. Special Heat-Transfer Coefficients. Dimensional Analysis in Heat Transfer. Numerical Methods for Steady-State Conduction in Two Dimensions. 5. Principles of Unsteady-State Heat Transfer. Derivation of Basic Equation. Simplified Case for Systems with Negligible Internal Resistance. Unsteady-State Heat Conduction in Various Geometries. Numerical Finite-Difference Methods for Unsteady-State Conduction. Chilling and Freezing of Food and Biological Materials. Differential Equation of Energy Change. Boundary-Layer Flow and Turbulence in Heat Transfer. 6. Principles of Mass Transfer. Introduction to Mass Transfer and Diffusion. Molecular Diffusion in Gases. Molecular Diffusion in Liquids Molecular Diffusion in Biological Solutions and Gels. Molecular Diffusion in Solids. Numerical Methods for Steady-State Molecular Diffusion in Two Dimensions. 7. Principles of Unsteady-State and Convective Mass Transfer. Unsteady-State Diffusion. Convective Mass-Transfer Coefficients. Mass-Transfer Coefficients for Various Geometries. Mass Transfer to Suspensions of Small Particles. Molecular Diffusion Plus Convection and Chemical Reaction. Diffusion of Gases in Porous Solids and Capillaries. Numerical Methods for Unsteady-St
Copyright Date
2003
Target Audience
Scholarly & Professional
Dewey Decimal
660/.2842
Dewey Edition
21
Illustrated
Yes

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