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Boundary value problems for a class of impulsive functional equations

✍ Scribed by Juan J. Nieto; Rosana Rodríguez-López


Publisher
Elsevier Science
Year
2008
Tongue
English
Weight
388 KB
Volume
55
Category
Article
ISSN
0898-1221

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✦ Synopsis


This paper is related to the existence and approximation of solutions for impulsive functional differential equations with periodic boundary conditions. We study the existence and approximation of extremal solutions to different types of functional differential equations with impulses at fixed times, by the use of the monotone method. Some of the options included in this formulation are differential equations with maximum and integro-differential equations. In this paper, we also prove that the Lipschitzian character of the function which introduces the functional dependence in a differential equation is not a necessary condition for the development of the monotone iterative technique to obtain a solution and to approximate the extremal solutions to the equation in a given functional interval. The corresponding results are established for the impulsive case. The general formulation includes several types of functional dependence (delay equations, equations with maxima, integro-differential equations). Finally, we consider the case of functional dependence which is given by nonincreasing and bounded functions.


📜 SIMILAR VOLUMES


Periodic Boundary Value Problems for a C
✍ Eduardo Liz; J.J. Nieto 📂 Article 📅 1996 🏛 Elsevier Science 🌐 English ⚖ 122 KB

In this paper we show that the method of upper and lower solutions coupled with the monotone iterative technique is valid to obtain constructive proofs of existence of solutions for nonlinear periodic boundary value problems of functional differential equations without assuming properties of monoton