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The Mathematics of Nonlinear Programming (Hardcover, 1st ed. 1988. Corr. 2nd printing 1993): Anthony L. Peressini, Francis E.... The Mathematics of Nonlinear Programming (Hardcover, 1st ed. 1988. Corr. 2nd printing 1993)
Anthony L. Peressini, Francis E. Sullivan, J.J. Uhl
R2,274 Discovery Miles 22 740 Ships in 12 - 19 working days

This book is designed for a first course in nonlinear optimization. It starts with classical optimization notions from calculus and proceeds smoothly to a study of convex functions. This is followed by material on basic numerical methods, least squares, Karush-Kuhn-Tucker theory, penalty functions, and Lagrange multipliers. The book has been tested in the classroom; the approach is rigorous at all times and geometric intuition is developed. The numerical methods are up-to-date. The presentation emphasizes the mathematical ideas behind computer codes.The book is aimed at the student who has a working knowledge of linear algebra and partial differentiation but has had no previous exposure to optimization. Mathematics instructors will be comfortable with the mathematical approach which deemphasizes recipes and emphasizes understanding underlying concepts. There are many exercises chosen to highlight the fundamental ideas.

The Mathematics of Nonlinear Programming (Paperback, Softcover reprint of the original 1st ed. 1988): Anthony L. Peressini,... The Mathematics of Nonlinear Programming (Paperback, Softcover reprint of the original 1st ed. 1988)
Anthony L. Peressini, Francis E. Sullivan, J.J. Jr. Uhl
R2,380 Discovery Miles 23 800 Ships in 10 - 15 working days

Nonlinear programming provides an excellent opportunity to explore an interesting variety of pure and solidly applicable mathematics, numerical analysis, and computing. This text develops some of the ideas and techniques involved in the optimization methods using calculus, leading to the study of convexity. This is followed by material on basic numerical methods, least squares, the Karush-Kuhn-Tucker theorem, penalty functions, and Lagrange multipliers. The authors have aimed their presentation at the student who has a working knowledge of matrix algebra and advanced calculus, but has had no previous exposure to optimization.

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