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Details about  Principles of Heat Transfer 7th Ed.

Principles of Heat Transfer 7th Ed.

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eBay item number:
180931291035
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Last updated on  Nov 22, 2012 13:35:19 PST  View all revisions

Item specifics

Condition:
Brand New: A new, unread, unused book in perfect condition with no missing or damaged pages. See the seller’s ... Read moreabout the condition
ISBN-10:

0495667706

Format:

Hardcover, Trade Cloth

ISBN-13:

9780495667704

Publication Year:

2010

Author:

Raj Manglik, Mark S. Bohn, Frank Kreith, Mark Bohn, Raj M. Manglik

Language:

English

ISBN:

9780495667704

Detailed item info

Synopsis
PRINCIPLES OF HEAT TRANSFER was first published in 1959, and since then it has grown to be considered a classic within the field, setting the standards for coverage and organization within all other Heat Transfer texts. The book is designed for a one-semester course in heat transfer at the junior or senior level, however, flexibility in pedagogy has been provided. Following several recommendations of the ASME Committee on Heat Transfer Education, Kreith, Manglik, and Bohn present relevant and stimulating content in this fresh and comprehensive approach to heat transfer, acknowledging that in today's world classical mathematical solutions to heat transfer problems are often less influential than computational analysis. This acknowledgement is met with the emphasize that students must still learn to appreciate both the physics and the elegance of simple mathematics in addressing complex phenomena, aiming at presenting the principles of heat transfer both within the framework of classical mathematics and empirical correlations.

Product Identifiers
ISBN-100495667706
ISBN-139780495667704

Key Details
AuthorFrank Kreith, Mark Bohn, Mark S. Bohn, Raj M. Manglik, Raj Manglik
Number Of Pages784 pages
Publication Date2010-06-10
LanguageEnglish
PublisherCourse Technology

Additional Details
Edition Number7
IllustratedN

Dimensions
Weight50.5 Oz

Target Audience
GroupCollege Audience

Classification Method
Dewey Decimal536.2
Dewey Edition21

Publisher's Note
PRINCIPLES OF HEAT TRANSFER was first published in 1959, and since then it has grown to be considered a classic within the field, setting the standards for coverage and organization within all other Heat Transfer texts. The book is designed for a one-semester course in heat transfer at the junior or senior level, however, flexibility in pedagogy has been provided. Following several recommendations of the ASME Committee on Heat Transfer Education, Kreith, Manglik, and Bohn present relevant and stimulating content in this fresh and comprehensive approach to heat transfer, acknowledging that in today's world classical mathematical solutions to heat transfer problems are often less influential than computational analysis. This acknowledgement is met with the emphasize that students must still learn to appreciate both the physics and the elegance of simple mathematics in addressing complex phenomena, aiming at presenting the principles of heat transfer both within the framework of classical mathematics and empirical correlations.

Reviews
"The authors have done an excellent job of paying attention to their audience, defining terms, pacing the presentation and motivating the students."

"The breadth of material in this book is excellent, and the text is well-written, informative in detail and easy to understand."


Certain data records © 2014 Bowker. Rights in cover images reserved by owners.
PRINCIPLES OF HEAT TRANSFER was first published in 1959, and since then it has grown to be considered a classic within the field, setting the standards for coverage and organization within all other Heat Transfer texts. The book is designed for a one-semester course in heat transfer at the junior or senior level, however, flexibility in pedagogy has been provided. Following several recommendations of the ASME Committee on Heat Transfer Education, Kreith, Manglik, and Bohn present relevant and stimulating content in this fresh and comprehensive approach to heat transfer, acknowledging that in today's world classical mathematical solutions to heat transfer problems are often less influential than computational analysis. This acknowledgement is met with the emphasize that students must still learn to appreciate both the physics and the elegance of simple mathematics in addressing complex phenomena, aiming at presenting the principles of heat transfer both within the framework of classical mathematics and empirical correlations.

  • Addresses the rapid and pervasive changes in technology, applications, analysis tools, and the economy, and their relation to the principles of heat transfer.
  • Presents an appreciation for both the physics and the elegance of simple mathematics in addressing complex phenomena while emphasizing the importance of analysis by means of computers.
  • Uses open-ended problems to illustrate practical applications of heat transfer with problem statements similar to those faced by practicing engineers.
  • Teaches methods for approaching real-world problems such as describing problems in your own words, providing schematic descriptions, indicating known and unknown variables, making judicious engineering decisions on the approach of a solution, etc.

Frank Kreith
Dr. Frank Kreith is a Professor Emeritus in the Mechanical Engineering Department at the University of Colorado in Boulder. He received his Doctorate in Applied Science from the University of Paris in 1965. His areas of interest include heat transfer, thermal engineering, and solar engineering.
Raj M. Manglik
Dr. Raj. M. Manglik is a Professor of Mechanical Engineering in the College of Engineering and Applied Science at the University of Cincinnati, OH. Dr. Manglik is a Fellow of the American Society of Mechanical Engineers as well as of the Wessex Institute of Great Britain. He has received many honors from both industry and academia.
Mark S. Bohn
Dr. Mark S. Bohn is the former vice president of engineering, president of Rentech Services Corporation, and co-founder of Rentech, Inc.

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