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Incropera's Principles of Heat and Mass Transfer. Global Edition

  • ID: 4375147
  • Book
  • October 2017
  • Region: Global
  • 1000 Pages
  • John Wiley and Sons Ltd
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Applying the rigorous and systematic problem–solving methodology pioneered by this text, an abundance of examples and problems reveal the richness and beauty of the discipline. It has been the gold standard of heat transfer pedagogy for many decades, with a commitment to continuous improvement by four authors with more than 150 years of combined experience in heat transfer education, research and practice. This edition makes heat and mass transfer more approachable by giving additional emphasis to fundamental concepts, while highlighting the relevance of two of today′s most critical issues: energy and the environment.

This book is authorized for sale in Europe, Asia, Africa and the Middle East only and may not be exported. The content is materially different than products for other markets including the authorized U.S. counterpart of this title. Exportation of this book to another region without the Publisher′s authorization may be illegal and a violation of the Publisher′s rights. The Publisher may take legal action to enforce its rights.

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1 Introduction

2 Introduction to Conduction

3 One–Dimensional, Steady–State Conduction

4 Two–Dimensional, Steady–State Conduction

5 Transient Conduction

6 Introduction to Convection

 7 External Flow

8 Internal Flow

9 Free Convection

10 Boiling and Condensation

11 Heat Exchangers

12 Radiation: Processes and Properties

13 Radiation Exchange Between Surfaces

14 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

Appendix D The Gauss Seidel Method

Appendix E The Convection Transfer Equations

Appendix F Boundary Layer Equations for Turbulent Flow

Appendix G An Integral Laminar Boundary Layer Solution for

Parallel Flow over a Flat Plate


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Theodore L. Bergman
Adrienne S. Lavine
Frank P. Incropera
David P. DeWitt
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