Introduction To Optimization And Semidifferential Calculus


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Introduction to Optimization and Semidifferential Calculus


Introduction to Optimization and Semidifferential Calculus

Author: Michel C. Delfour

language: en

Publisher: SIAM

Release Date: 2012-05-03


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A self-contained undergraduate-level course in optimization with semidifferential calculus, complete with numerous examples and exercises.

Introduction to Optimization and Semidifferential Calculus


Introduction to Optimization and Semidifferential Calculus

Author: Michel C. Delfour

language: en

Publisher: SIAM

Release Date: 2012-01-01


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This primarily undergraduate textbook focuses on finite-dimensional optimization. Readers will find: an original and well integrated treatment of semidifferential calculus and optimization; emphasis on the Hadamard subdifferential, introduced at the beginning of the 20th century and somewhat overlooked for many years, with references to original papers by Hadamard (1923) and Fréchet (1925); fundamentals of convex analysis (convexification, Fenchel duality, linear and quadratic programming, two-person zero-sum games, Lagrange primal and dual problems, semiconvex and semiconcave functions); complete definitions, theorems, and detailed proofs, even though it is not necessary to work through all of them; commentaries that put the subject into historical perspective; numerous examples and exercises throughout each chapter, and answers to the exercises provided in an appendix.

Introduction to Optimization and Hadamard Semidifferential Calculus, Second Edition


Introduction to Optimization and Hadamard Semidifferential Calculus, Second Edition

Author: Michel C. Delfour

language: en

Publisher: SIAM

Release Date: 2019-12-19


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This second edition provides an enhanced exposition of the long-overlooked Hadamard semidifferential calculus, first introduced in the 1920s by mathematicians Jacques Hadamard and Maurice René Fréchet. Hadamard semidifferential calculus is possibly the largest family of nondifferentiable functions that retains all the features of classical differential calculus, including the chain rule, making it a natural framework for initiating a large audience of undergraduates and non-mathematicians into the world of nondifferentiable optimization. Introduction to Optimization and Hadamard Semidifferential Calculus, Second Edition builds upon its prior edition’s foundations in Hadamard semidifferential calculus, showcasing new material linked to convex analysis and nonsmooth optimization. It presents a modern treatment of optimization and Hadamard semidifferential calculus while remaining at a level that is accessible to undergraduate students, and challenges students with exercises related to problems in such fields as engineering, mechanics, medicine, physics, and economics. Answers are supplied in Appendix B. Students of mathematics, physics, engineering, economics, and other disciplines that demand a basic knowledge of mathematical analysis and linear algebra will find this a fitting primary or companion resource for their studies. This textbook has been designed and tested for a one-term course at the undergraduate level. In its full version, it is appropriate for a first-year graduate course and as a reference.