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Differential Forms with Applications to the Physical Sciences (Dover Books on Mathematics)

Differential Forms with Applications to the Physical Sciences (Dover Books on Mathematics)

Differential Forms with Applications to the Physical Sciences (Dover Books on
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Differential Forms with Applications to the Physical Sciences (Dover Books on Mathematics) Paperback - 1989

by Flanders, Harley

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  • Paperback
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Dover Publications. Used - Good. paperback 100% of proceeds go to charity! Good condition with all pages in tact. Item shows signs of use and may have cosmetic defects.
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Details

  • Title Differential Forms with Applications to the Physical Sciences (Dover Books on Mathematics)
  • Author Flanders, Harley
  • Binding Paperback
  • Edition New edition
  • Condition Used - Good
  • Pages 240
  • Volumes 1
  • Language ENG
  • Publisher Dover Publications, Mineola, New York, U.S.A.
  • Publication date 1989-12
  • Illustrated Yes
  • Features Bibliography, Glossary, Illustrated
  • Bookseller's Inventory # 2CC-04-2888
  • ISBN 9780486661698 / 0486661695
  • Weight 0.54 lbs (0.24 kg)
  • Dimensions 8.5 x 5.42 x 0.44 in (21.59 x 13.77 x 1.12 cm)
  • Category Mathematics
  • Library of Congress subjects Mathematical physics, Differential forms
  • Library of Congress Catalogue Number 89036936
  • Dewey Decimal Code 515.37
  • Quantity available 1

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Reader reviews for Differential Forms with Applications to the Physical Sciences (Dover Books on Mathematics)

From the publisher

"To the reader who wishes to obtain a bird's-eye view of the theory of differential forms with applications to other branches of pure mathematics, applied mathematic and physics, I can recommend no better book." -- T. J. Willmore, London Mathematical Society Journal.
This excellent text introduces the use of exterior differential forms as a powerful tool in the analysis of a variety of mathematical problems in the physical and engineering sciences. Requiring familiarity with several variable calculus and some knowledge of linear algebra and set theory, it is directed primarily to engineers and physical scientists, but it has also been used successfully to introduce modern differential geometry to students in mathematics.
Chapter I introduces exterior differential forms and their comparisons with tensors. The next three chapters take up exterior algebra, the exterior derivative and their applications. Chapter V discusses manifolds and integration, and Chapter VI covers applications in Euclidean space. The last three chapters explore applications to differential equations, differential geometry, and group theory.
"The book is very readable, indeed, enjoyable -- and, although addressed to engineers and scientists, should be not at all inaccessible to or inappropriate for ... first year graduate students and bright undergraduates." -- F. E. J. Linton, Wesleyan University, American Mathematical Monthly.

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