Best Proximity Points of Generalized Semicyclic Impulsive Self-Mappings: Applications To Impulsive Differential and Difference Equations
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Date
2013
Authors
Journal Title
Journal ISSN
Volume Title
Publisher
Hindawi Ltd
Open Access Color
GOLD
Green Open Access
Yes
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Publicly Funded
No
Abstract
This paper is devoted to the study of convergence properties of distances between points and the existence and uniqueness of best proximity and fixed points of the so-called semicyclic impulsive self-mappings on the union of a number of nonempty subsets in metric spaces. The convergences of distances between consecutive iterated points are studied in metric spaces, while those associated with convergence to best proximity points are set in uniformly convex Banach spaces which are simultaneously complete metric spaces. The concept of semicyclic self-mappings generalizes the well-known one of cyclic ones in the sense that the iterated sequences built through such mappings are allowed to have images located in the same subset as their pre-image. The self-mappings under study might be in the most general case impulsive in the sense that they are composite mappings consisting of two self-mappings, and one of them is eventually discontinuous. Thus, the developed formalism can be applied to the study of stability of a class of impulsive differential equations and that of their discrete counterparts. Some application examples to impulsive differential equations are also given.
Description
de la Sen, manuel/0000-0001-9320-9433; KARAPINAR, ERDAL/0000-0002-6798-3254
Keywords
[No Keyword Available], complete metric spaces, ANALYSIS, pair, existence, contraction, common fixed-point, stability, theorems, MATHEMATICS, APPLIED, QA1-939, approximation, Mathematics, time-delay systems, Fixed-point and coincidence theorems (topological aspects), Special maps on metric spaces
Fields of Science
01 natural sciences, 0101 mathematics
Citation
WoS Q
Scopus Q
Q3

OpenCitations Citation Count
7
Source
Abstract and Applied Analysis
Volume
2013
Issue
Start Page
1
End Page
16
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CrossRef : 8
Scopus : 12
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Mendeley Readers : 6
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12
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Web of Science™ Citations
10
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7
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