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This comprehensive introduction to the calculus of variations and
its main principles also presents their real-life applications in
various contexts: mathematical physics, differential geometry, and
optimization in economics. Based on the authors' original work, it
provides an overview of the field, with examples and exercises
suitable for graduate students entering research. The method of
presentation will appeal to readers with diverse backgrounds in
functional analysis, differential geometry and partial differential
equations. Each chapter includes detailed heuristic arguments,
providing thorough motivation for the material developed later in
the text. Since much of the material has a strong geometric flavor,
the authors have supplemented the text with figures to illustrate
the abstract concepts. Its extensive reference list and index also
make this a valuable resource for researchers working in a variety
of fields who are interested in partial differential equations and
functional analysis.
This book provides a modern and comprehensive presentation of a
wide variety of problems arising in nonlinear analysis, game
theory, engineering, mathematical physics and contact mechanics. It
includes recent achievements and puts them into the context of the
existing literature. The volume is organized in four parts. Part I
contains fundamental mathematical results concerning convex and
locally Lipschits functions. Together with the Appendices, this
foundational part establishes the self-contained character of the
text. As the title suggests, in the following sections, both
variational and topological methods are developed based on critical
and fixed point results for nonsmooth functions. The authors employ
these methods to handle the exemplary problems from game theory and
engineering that are investigated in Part II, respectively Part
III. Part IV is devoted to applications in contact mechanics. The
book will be of interest to PhD students and researchers in applied
mathematics as well as specialists working in nonsmooth analysis
and engineering.
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