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Fundamentals of heat and mass transfer / Frank P. Incropera ... [and other].

Contributor(s): Material type: TextTextPublisher: Hoboken, NJ : John Wiley, [2007]Edition: sixth editionDescription: xxv, 997 pages : illustrations ; 27 cmContent type:
  • text
Media type:
  • unmediated
Carrier type:
  • volume
ISBN:
  • 0471457280 (cloth)
  • 9780471457282
Subject(s): DDC classification:
  • 621.4022 22 F
Online resources:
Contents:
Introduction -- Introduction to conduction -- One-dimensional, steady-state conduction -- Two-dimensional, steady-state conduction -- Transient conduction -- Introduction to convection -- External flow -- Internal flow -- Free convection -- Boiling and condensation -- Heat exchangers -- Radiation : processes and properties -- Radiation exchange between surfaces -- Diffusion mass transfer -- Appendix A. Thermophysical properties of matter -- Appendix B. Mathematical relations and functions -- Appendix C. Thermal conditions associated with uniform energy generation in one-dimensional, steady-state systems.
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Holdings
Item type Current library Collection Call number Status Date due Barcode
Books Books Main library B3 Faculty of Engineering & Technology (General) 621.4022 F (Browse shelf(Opens below)) Available 00005864
Books Books Main library B3 621.4022 F (Browse shelf(Opens below)) Available 00006921

Rev. ed. of: Fundamentals of heat and mass transfer / Frank P. Incropera, David P. DeWitt. 5th ed. c2002.

Includes bibliographical references and index.

Introduction --
Introduction to conduction --
One-dimensional, steady-state conduction --
Two-dimensional, steady-state conduction --
Transient conduction --
Introduction to convection --
External flow --
Internal flow --
Free convection --
Boiling and condensation --
Heat exchangers --
Radiation : processes and properties --
Radiation exchange between surfaces --
Diffusion mass transfer --
Appendix A. Thermophysical properties of matter --
Appendix B. Mathematical relations and functions --
Appendix C. Thermal conditions associated with uniform energy generation in one-dimensional, steady-state systems.

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