Topological Structure of the Solution Set for Evolution Inclusions
Yong Zhou author Rong-Nian Wang author Li Peng author
Format:Paperback
Publisher:Springer Verlag, Singapore
Published:11th Dec '18
Currently unavailable, and unfortunately no date known when it will be back

This book systematically presents the topological structure of solution sets and attractability for nonlinear evolution inclusions, together with its relevant applications in control problems and partial differential equations. It provides readers the background material needed to delve deeper into the subject and explore the rich research literature.
In addition, the book addresses many of the basic techniques and results recently developed in connection with this theory, including the structure of solution sets for evolution inclusions with m-dissipative operators; quasi-autonomous and non-autonomous evolution inclusions and control systems; evolution inclusions with the Hille-Yosida operator; functional evolution inclusions; impulsive evolution inclusions; and stochastic evolution inclusions. Several applications of evolution inclusions and control systems are also discussed in detail.
Based on extensive research work conducted by the authors and other experts over the past four years, the information presented is cutting-edge and comprehensive. As such, the book fills an important gap in the body of literature on the structure of evolution inclusions and its applications.
“The book offers a comprehensive, nicely documented study of the above-mentioned problems, based on recent results in the literature on the subject. It will be very useful for postgraduate students and researchers alike interested in topological methods for differential inclusions.” (Irene Benedetti, Mathematical Reviews, November, 2018)
“This book will be useful to researchers and graduate students interested on the structure of the solution sets of evolution inclusion and its applications.” (Sotiris K. Ntouyas, zbMATH 1382.34001, 2018)
ISBN: 9789811349249
Dimensions: unknown
Weight: unknown
269 pages
Softcover reprint of the original 1st ed. 2017