Optimal Solution of Nonlinear Equations
| AUTHOR | Sikorski, Krzysztof A.; Sikorski, Krzysztof a. |
| PUBLISHER | Oxford University Press (01/18/2001) |
| PRODUCT TYPE | Hardcover (Hardcover) |
Description
IOptimal Solution of Nonlinear Equations R is a text/monograph designed to provide an overview of optimal computational methods for the solution of nonlinear equations, fixed points of contractive and noncontractive mapping, and for the computation of the topological degree. It is of interest to any reader working in the area of Information-Based Complexity. The worst-case settings are analyzed here. Several classes of functions are studied with special empahsis on tight complexity bounds and methods which are close to or achieve these bounds. Each chapter ends with exercises, including companies and open-ended research based exercises.
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Product Format
Product Details
ISBN-13:
9780195106909
ISBN-10:
0195106903
Binding:
Hardback or Cased Book (Sewn)
Content Language:
English
More Product Details
Page Count:
256
Carton Quantity:
30
Product Dimensions:
6.14 x 0.63 x 9.21 inches
Weight:
1.18 pound(s)
Feature Codes:
Bibliography
Country of Origin:
GB
Subject Information
BISAC Categories
Mathematics | Differential Equations - General
Mathematics | Calculus
Mathematics | Information Theory
Dewey Decimal:
515.355
Library of Congress Control Number:
99045246
Descriptions, Reviews, Etc.
publisher marketing
IOptimal Solution of Nonlinear Equations R is a text/monograph designed to provide an overview of optimal computational methods for the solution of nonlinear equations, fixed points of contractive and noncontractive mapping, and for the computation of the topological degree. It is of interest to any reader working in the area of Information-Based Complexity. The worst-case settings are analyzed here. Several classes of functions are studied with special empahsis on tight complexity bounds and methods which are close to or achieve these bounds. Each chapter ends with exercises, including companies and open-ended research based exercises.
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