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Variational Analysis and Generalized Differentiation II Book

Variational Analysis and Generalized Differentiation II
Variational Analysis and Generalized Differentiation II, Comprehensive and state-of-the art study of the basic concepts and principles of variational analysis and generalized differentiation in both finite-dimensional and infinite-dimensional spaces
Presents numerous applications to problems in the optimizat, Variational Analysis and Generalized Differentiation II has a rating of 4 stars
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Variational Analysis and Generalized Differentiation II, Comprehensive and state-of-the art study of the basic concepts and principles of variational analysis and generalized differentiation in both finite-dimensional and infinite-dimensional spaces Presents numerous applications to problems in the optimizat, Variational Analysis and Generalized Differentiation II
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  • Variational Analysis and Generalized Differentiation II
  • Written by author Boris S. Mordukhovich
  • Published by Springer-Verlag New York, LLC, March 2008
  • Comprehensive and state-of-the art study of the basic concepts and principles of variational analysis and generalized differentiation in both finite-dimensional and infinite-dimensional spaces Presents numerous applications to problems in the optimizat
  • Variational analysis is a fruitful area in mathematics that, on one hand, deals with the study of optimization and equilibrium problems and, on the other hand, applies optimization, perturbation, and approximation ideas to the analysis of a broad range of
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Constrained Optimization and Equilibria: Necessary Optimality Conditions in Nondifferentiable Programming. Mathematical Programs with Equilibrium Constraints. Multiobjective Optimization. Subextremality and Suboptimality at Linear Rate.- Optimal Control of Evolution Systems in Banach Spaces: Optimal Control of Discrete-Time and Continuous-time Evolution Inclusions. Necessary Optimality Conditions for Differential Inclusions without Relaxation. Maximum Principle for Continuous-Time Systems with Smooth Dynamics. Approximate Maximum Principle in Optimal Control.- Optimal Control of Distributed Systems: Optimization of Differential-Algebraic Inclusions with Delays. Neumann Boundary Control of Semilinear Constrained Hyperbolic Equations. Drichelet Boundary Control of Linear Constrained Hyperbolic Equations. Minimax Control of Parabolic Systems with Pointwise State Constraints.- Applications to Economics: Models of Welfare Economics. Second Welfare Theorem for Nonconvex Economics. Nonconvex Economics with Ordered Commodity Spaces. Further Extensions and Public Goods.- References.- Glossary of Notation.- Index of Statements.


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Variational Analysis and Generalized Differentiation II, Comprehensive and state-of-the art study of the basic concepts and principles of variational analysis and generalized differentiation in both finite-dimensional and infinite-dimensional spaces
Presents numerous applications to problems in the optimizat, Variational Analysis and Generalized Differentiation II

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Variational Analysis and Generalized Differentiation II, Comprehensive and state-of-the art study of the basic concepts and principles of variational analysis and generalized differentiation in both finite-dimensional and infinite-dimensional spaces
Presents numerous applications to problems in the optimizat, Variational Analysis and Generalized Differentiation II

Variational Analysis and Generalized Differentiation II

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Variational Analysis and Generalized Differentiation II, Comprehensive and state-of-the art study of the basic concepts and principles of variational analysis and generalized differentiation in both finite-dimensional and infinite-dimensional spaces
Presents numerous applications to problems in the optimizat, Variational Analysis and Generalized Differentiation II

Variational Analysis and Generalized Differentiation II

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