Introduction to Heat Transfer by David P. DeWitt and Frank P. Incropera (2001, Hardcover)
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About this product
Product Identifiers
PublisherWiley & Sons, Incorporated, John
ISBN-100471386499
ISBN-139780471386490
eBay Product ID (ePID)1784665
Product Key Features
Number of Pages912 Pages
LanguageEnglish
Publication NameIntroduction to Heat Transfer
SubjectMechanics / Thermodynamics
Publication Year2001
FeaturesRevised
TypeTextbook
AuthorDavid P. Dewitt, Frank P. Incropera
Subject AreaScience
FormatHardcover
Dimensions
Item Height1.4 in
Item Weight64 Oz
Item Length10.4 in
Item Width8.3 in
Additional Product Features
Edition Number4
Intended AudienceCollege Audience
LCCN2001-017852
Dewey Edition21
IllustratedYes
Dewey Decimal621.4022
Edition DescriptionRevised edition
Table Of ContentSymbolsIntroduction.Introduction to Conduction.One-Dimensional, Steady-State Conduction.Two-Dimensional, Steady-State Conduction.Transient Conduction.Introducion to Convection.External Flow.Internal Flow.Free Convection.Boiling and Condensation.Heat Exchangers.Radiation: Processes and Properties.Radiation Exchange Between Surfaces.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.Appendix D: Graphical Representation of One-Dimensional, Transient Conduction in the Plane Wall, Long Cylinder, and Sphere.Appendix E: The Convection Transfer Equations.Appendix F: An Integral Laminar Boundary Layer Solution for Parallel Flow Over Flat Plate.Index.
SynopsisThe de facto standard text for heat transfer - noted for its readability, comprehensiveness and relevancy. Now revised to include clarified learning objectives, chapter summaries and many new problems. The fourth edition, like previous editions, continues to support four student learning objectives, desired attributes of any first course in heat transfer: * Learn the meaning of the terminology and physical principles of heat transfer delineate pertinent transport phenomena for any process or system involving heat transfer. * Use requisite inputs for computing heat transfer rates and/or material temperatures. * Develop representative models of real processes and systems and draw conclusions concerning process/systems design or performance from the attendant analysis.