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This book introduces the basic concepts of real and functional
analysis. It presents the fundamentals of the calculus of
variations, convex analysis, duality, and optimization that are
necessary to develop applications to physics and engineering
problems. The book includes introductory and advanced concepts in
measure and integration, as well as an introduction to Sobolev
spaces. The problems presented are nonlinear, with non-convex
variational formulation. Notably, the primal global minima may not
be attained in some situations, in which cases the solution of the
dual problem corresponds to an appropriate weak cluster point of
minimizing sequences for the primal one. Indeed, the dual approach
more readily facilitates numerical computations for some of the
selected models. While intended primarily for applied
mathematicians, the text will also be of interest to engineers,
physicists, and other researchers in related fields."
This book introduces the basic concepts of real and functional
analysis. It presents the fundamentals of the calculus of
variations, convex analysis, duality, and optimization that are
necessary to develop applications to physics and engineering
problems. The book includes introductory and advanced concepts in
measure and integration, as well as an introduction to Sobolev
spaces. The problems presented are nonlinear, with non-convex
variational formulation. Notably, the primal global minima may not
be attained in some situations, in which cases the solution of the
dual problem corresponds to an appropriate weak cluster point of
minimizing sequences for the primal one. Indeed, the dual approach
more readily facilitates numerical computations for some of the
selected models. While intended primarily for applied
mathematicians, the text will also be of interest to engineers,
physicists, and other researchers in related fields.
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