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Advanced Mathematical Methods for Scientists and Engineers: Asymptotic Methods and Perturbation Theory (v. 1)

Advanced Mathematical Methods for Scientists and Engineers: Asymptotic Methods and Perturbation Theory (v. 1)Authors: Carl M. Bender, Steven A. Orszag
Publisher: Springer

List Price: $99.00
Buy New: $63.12
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Seller: Wiltonbooks

Languages: English (Unknown), English (Original Language), English (Published)
Media: Hardcover
Edition: 1
Pages: 607
Number Of Items: 1
Shipping Weight (lbs): 2.1
Dimensions (in): 9.3 x 6 x 1.3

ISBN: 0387989315
EAN: 9780387989310
ASIN: 0387989315

Publication Date: October 29, 1999
Availability: Usually ships in 1-2 business days

Also Available In:

  • Paperback - Advanced Mathematical Methods in Science and Engineering
  • Digital - Advanced Mathematical Methods for Scientists and Engineers I: Asymptotic Methods and Perturbation Theory (v. 1)
  • Hardcover - Advanced Mathematical Methods for Scientists and Engineers (International Series in Pure and Applied Mathematics)

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Product Description
A clear, practical and self-contained presentation of the methods of asymptotics and perturbation theory for obtaining approximate analytical solutions to differential and difference equations. Aimed at teaching the most useful insights in approaching new problems, the text avoids special methods and tricks that only work for particular problems. Intended for graduates and advanced undergraduates, it assumes only a limited familiarity with differential equations and complex variables. The presentation begins with a review of differential and difference equations, then develops local asymptotic methods for such equations, and explains perturbation and summation theory before concluding with an exposition of global asymptotic methods. Emphasizing applications, the discussion stresses care rather than rigor and relies on many well-chosen examples to teach readers how an applied mathematician tackles problems. There are 190 computer-generated plots and tables comparing approximate and exact solutions, over 600 problems of varying levels of difficulty, and an appendix summarizing the properties of special functions.


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