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Introduction to Engineering Heat Transfer by G.F. Nellis (English) Hardcover Boo

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Numero oggetto eBay:388647958968
Ultimo aggiornamento: 04 ago 2025 10:59:04 CESTVedi tutte le revisioniVedi tutte le revisioni

Specifiche dell'oggetto

Condizione
Nuovo: Libro nuovo, intatto e non letto, in perfette condizioni, senza pagine mancanti o ...
ISBN-13
9781107179530
Book Title
Introduction to Engineering Heat Transfer
ISBN
9781107179530

Informazioni su questo prodotto

Product Identifiers

Publisher
Cambridge University Press
ISBN-10
110717953X
ISBN-13
9781107179530
eBay Product ID (ePID)
5038600962

Product Key Features

Number of Pages
895 Pages
Publication Name
Introduction to Engineering Heat Transfer
Language
English
Publication Year
2020
Subject
Mechanical
Type
Textbook
Author
S. A. Klein, G. F. Nellis
Subject Area
Technology & Engineering
Format
Hardcover

Dimensions

Item Height
1.9 in
Item Weight
82.9 Oz
Item Length
9.9 in
Item Width
7.6 in

Additional Product Features

Intended Audience
College Audience
Reviews
'This excellent text on heat transfer continues the tradition of the strong analytical treatment of conduction and convection heat transfer, buttressed by strong EES, FEHT, and MATLAB examples ... The emphasis on examples is substantial, and the use of the software is tastefully introduced in ways that emphasize the solution instead of the software ... This edition is well organized, succinctly written, and well supported by software aids. The book is also a valuable reference for those in a wide variety of disciplines desiring to self-learn heat transfer. All the essential elements of a heat transfer course are well represented in this volume.' Ernest W. Tollner, University of Georgia
Dewey Edition
23
Illustrated
Yes
Dewey Decimal
621.4022
Table Of Content
1. Introduction; 2. One-dimensional, steady state conduction; 3. Extended surface problems; 4. Two-dimensional, steady-state conduction; 5. Lumped transient problems; 6. Transient conduction; 7. Convection; 8. External forced convection; 9. Internal forced convection; 10. Free convection; 11. Boiling and condensation; 12. Heat exchangers; 13. Mass transfer; 14. Radiation; Appendix A. Thermophysical properties of solids; Appendix B. Thermophysical properties of liquids; Appendix C. Thermophysical properties of gases; Appendix D. Thermophysical properties of saturated liquids; Appendix E. Answers to selected problems; Index.
Synopsis
This new text integrates fundamental theory with modern computational tools such as EES, MATLAB(R), and FEHT to equip students with the essential tools for designing and optimizing real-world systems and the skills needed to become effective practicing engineers. Real engineering problems are illustrated and solved in a clear step-by-step manner. Starting from first principles, derivations are tailored to be accessible to undergraduates by separating the formulation and analysis from the solution and exploration steps to encourage a deep and practical understanding. Numerous exercises are provided for homework and self-study and include standard hand calculations as well as more advanced project-focused problems for the practice and application of computational tools. Appendices include reference tables for thermophysical properties and answers to selected homework problems from the book. Complete with an online package of guidance documents on EES, MATLAB(R), and FEHT software, sample code, lecture slides, video tutorials, and a test bank and full solutions manual for instructors, this is an ideal text for undergraduate heat transfer courses and a useful guide for practicing engineers., This new text integrates fundamental theory with modern computational tools such as EES, MATLAB®, and FEHT to equip students with the essential tools for designing and optimizing real-world systems and the skills needed to become effective practicing engineers. Real engineering problems are illustrated and solved in a clear step-by-step manner. Starting from first principles, derivations are tailored to be accessible to undergraduates by separating the formulation and analysis from the solution and exploration steps to encourage a deep and practical understanding. Numerous exercises are provided for homework and self-study and include standard hand calculations as well as more advanced project-focused problems for the practice and application of computational tools. Appendices include reference tables for thermophysical properties and answers to selected homework problems from the book. Complete with an online package of guidance documents on EES, MATLAB®, and FEHT software, sample code, lecture slides, video tutorials, and a test bank and full solutions manual for instructors, this is an ideal text for undergraduate heat transfer courses and a useful guide for practicing engineers., Integrates fundamental theory with computational tools to give students the skills and confidence to solve real-world heat transfer problems. With extensive examples and real engineering problems throughout, and a suite of online teaching resources, this is an essential text for heat transfer courses and a useful guide for practicing engineers.
LC Classification Number
TJ260.N453 2020

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