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Since the 1960s, many researchers have extended topological degree
theory to various non-compact type nonlinear mappings, and it has
become a valuable tool in nonlinear analysis. Presenting a survey
of advances made in generalizations of degree theory during the
past decade, this book focuses on topological degree theory in
normed spaces and its applications. The authors begin by
introducing the Brouwer degree theory in Rn, then consider the
Leray-Schauder degree for compact mappings in normed spaces. Next,
they explore the degree theory for condensing mappings, including
applications to ODEs in Banach spaces. This is followed by a study
of degree theory for A-proper mappings and its applications to
semilinear operator equations with Fredholm mappings and periodic
boundary value problems. The focus then turns to construction of
Mawhin's coincidence degree for L-compact mappings, followed by a
presentation of a degree theory for mappings of class (S+) and its
perturbations with other monotone-type mappings. The final chapter
studies the fixed point index theory in a cone of a Banach space
and presents a notable new fixed point index for countably
condensing maps. Examples and exercises complement each chapter.
With its blend of old and new techniques, Topological Degree Theory
and Applications forms an outstanding text for self-study or
special topics courses and a valuable reference for anyone working
in differential equations, analysis, or topology.
This book primarily deals with non-linear operator theory in
topological vector spaces and applications. Recently, non-linear
functional analysis has become a main field of mathematics, which
has played an important role in physics, mechanics and engineering,
operations research and economics and many others for the past few
decades. The book presents a survey of some main ideas, concepts,
methods and applications in non-linear functional analysis.
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Raaiselsee
Troula Goosen
Paperback
R225
R211
Discovery Miles 2 110
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