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Interval Methods for Systems of Equations (Encyclopedia of Mathematics and its Applications, Vol. 37)

Interval Methods for Systems of Equations (Encyclopedia of Mathematics and its Applications, Vol. 37)

Interval Methods for Systems of Equations (Encyclopedia of Mathematics and its
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Interval Methods for Systems of Equations (Encyclopedia of Mathematics and its Applications, Vol. 37) Hardback - 1991

by Arnold Neumaier

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Cambridge University Press, 1991-01-25. First Edition. hardcover. New. 6.50x1.00x9.75. Buy with confidence. Excellent Customer Service & Return policy.
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Details

  • Title Interval Methods for Systems of Equations (Encyclopedia of Mathematics and its Applications, Vol. 37)
  • Author Arnold Neumaier
  • Binding Hardback
  • Edition First Edition
  • Condition New
  • Pages 272
  • Volumes 1
  • Language ENG
  • Publisher Cambridge University Press, Cambridge
  • Publication date 1991-01-25
  • Illustrated Yes
  • Features Bibliography, Illustrated, Index
  • Bookseller's Inventory # DADAX052133196X
  • ISBN 9780521331968 / 052133196X
  • Weight 1.23 lbs (0.56 kg)
  • Dimensions 9.21 x 6.14 x 0.63 in (23.39 x 15.60 x 1.60 cm)
  • Size 6.50x1.00x9.75
  • Category Mathematics
  • Library of Congress subjects Equations - Numerical solutions, Interval analysis (Mathematics)
  • Library of Congress Catalogue Number 89070812
  • Dewey Decimal Code 519.4
  • Quantity available 1

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Reader reviews for Interval Methods for Systems of Equations (Encyclopedia of Mathematics and its Applications, Vol. 37)

From the publisher

An interval is a natural way of specifying a number that is specified only within certain tolerances. Interval analysis consists of the tools and methods needed to solve linear and nonlinear systems of equations in the presence of data uncertainties. Applications include the sensitivity analysis of solutions of equations depending on parameters, the solution of global nonlinear problems, and the verification of results obtained by finite-precision arithmetic. In this book emphasis is laid on those aspects of the theory which are useful in actual computations. On the other hand, the theory is developed with full mathematical rigour. In order to keep the book self-contained, various results from linear algebra (Perron-Frobenius theory, M- and H- matrices) and analysis (existence of solutions to nonlinear systems) are proved, often from a novel and more general viewpoint. An extensive bibliography is included.
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