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Foundations In Applied Nuclear Engineering Analysis (2nd Edition)

Foundations In Applied Nuclear Engineering Analysis (2nd Edition)

Foundations In Applied Nuclear Engineering Analysis (2nd Edition)
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Foundations In Applied Nuclear Engineering Analysis (2nd Edition) Paperback - 2015

by Glenn E. Sjoden

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Details

  • Title Foundations In Applied Nuclear Engineering Analysis (2nd Edition)
  • Author Glenn E. Sjoden
  • Binding Paperback
  • Edition 2nd Revised edit
  • Condition New
  • Pages 404
  • Volumes 1
  • Language ENG
  • Publisher World Scientific Publishing Company
  • Publication date 2015-01-23
  • Features Bibliography, Index
  • Bookseller's Inventory # 23084053
  • ISBN 9789814630931 / 9814630934
  • Weight 1.25 lbs (0.57 kg)
  • Dimensions 8.9 x 5.9 x 0.9 in (22.61 x 14.99 x 2.29 cm)
  • Themes
    • Aspects (Academic): Science/Technology Aspects
  • Category Technology & Industrial Arts
  • Library of Congress subjects Nuclear engineering - Mathematics
  • Library of Congress Catalogue Number 2014030553
  • Dewey Decimal Code 621.48
  • Quantity available 5

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Reader reviews for Foundations In Applied Nuclear Engineering Analysis (2nd Edition)

From the publisher

Foundations in Applied Nuclear Engineering Analysis (2nd Edition) covers a fast-paced one semester course to address concepts of modeling in mathematics, engineering analysis, and computational problem solving needed in subjects such as radiation interactions, heat transfer, reactor physics, radiation transport, numerical modeling, etc., for success in a nuclear engineering/medical physics curriculum. While certain topics are covered tangentially, others are covered in depth to target on the appropriate amalgam of topics for success in navigating nuclear-related disciplines. Software examples and programming are used throughout the book, since computational capabilities are essential for new engineers. The book contains a array of topics that cover the essential subjects expected for students to successfully navigate into nuclear-related disciplines. The text assumes that students have familiarity with undergraduate mathematics and physics, and are ready to apply those skills to problems in nuclear engineering. Applications and problem sets are directed toward problems in nuclear science. Software examples using Mathematica software are used in the text. This text was developed as part of a very applied course in mathematical physics methods for nuclear engineers. The course in Nuclear Engineering Analysis that follows this text began at the University of Florida; the 2nd edition was released while at the Georgia Institute of Technology.

From the jacket flap

Foundations in Applied Nuclear Engineering Analysis (2nd Edition) covers a fast-paced one semester course to address concepts of modeling in mathematics, engineering analysis, and computational problem solving needed in subjects such as radiation interactions, heat transfer, reactor physics, radiation transport, numerical modeling, etc., for success in a nuclear engineering/medical physics curriculum. While certain topics are covered tangentially, others are covered in depth to target on the appropriate amalgam of topics for success in navigating nuclear-related disciplines. Software examples and programming are used throughout the book, since computational capabilities are essential for new engineers.

The book contains a array of topics that cover the essential subjects expected for students to successfully navigate into nuclear-related disciplines. The text assumes that students have familiarity with undergraduate mathematics and physics, and are ready to apply those skills to problems in nuclear engineering. Applications and problem sets are directed toward problems in nuclear science. Software examples using Mathematica software are used in the text.

This text was developed as part of a very applied course in mathematical physics methods for nuclear engineers. The course in Nuclear Engineering Analysis that follows this text began at the University of Florida; the 2nd edition was released while at the Georgia Institute of Technology.

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