AbstractHere we are concerned with the problem of the existence of periodic solution for certain second and third-order nonlinear differential equations. Our method here is to consider the problem as an eigenvalue problem and treat it by the topological degree theory. In particular we establish the conditions of the existence of periodic solution first for a simpler system which is homotopic to the original system and then generalize the obtained results for the focal system. The method employed here is applicable also for a system of nonlinear differential equations just with simple modifications. Finally, we present some specific examples numerically to show that the results are valid and realizable
We study the existence of periodic solutions for a nonlinear second order system of ordinary differe...
AbstractThe paper deals with the second order differential systems with periodic boundary conditions...
AbstractWe consider vector differential equtions x″ + g(t, x, x′) = f(t), x ϵ Rn, and show the exist...
AbstractHere we are concerned with the problem of the existence of periodic solution for certain sec...
AbstractThe existence of periodic solutions with anti-symmetries for third order pendulum-like diffe...
AbstractIn this paper, using topological degree and linear algebra techniques, we prove that a certa...
The first order dynamical system z\u27 = F(t,z) is considered, where F is T-periodic in time and sub...
AbstractWe discuss two different approaches to study the problem of existence of periodic solutions ...
The existence of periodic solutions of second-order differential equations has been studied permanen...
summary:A periodic boundary value problem for nonlinear differential equation of the second order is...
In this paper we present sufficient conditions for the existence of periodic solutions to some nonl...
summary:A periodic boundary value problem for nonlinear differential equation of the second order is...
In this paper, we study the existence of periodic solutions to nonlinear fully third-order different...
In this paper we consider the existence of periodic solutions of one-parameter and two-parameter fam...
AbstractThis note is a generalization of one of a paper by Mehri and Hamedani. Under suitable condit...
We study the existence of periodic solutions for a nonlinear second order system of ordinary differe...
AbstractThe paper deals with the second order differential systems with periodic boundary conditions...
AbstractWe consider vector differential equtions x″ + g(t, x, x′) = f(t), x ϵ Rn, and show the exist...
AbstractHere we are concerned with the problem of the existence of periodic solution for certain sec...
AbstractThe existence of periodic solutions with anti-symmetries for third order pendulum-like diffe...
AbstractIn this paper, using topological degree and linear algebra techniques, we prove that a certa...
The first order dynamical system z\u27 = F(t,z) is considered, where F is T-periodic in time and sub...
AbstractWe discuss two different approaches to study the problem of existence of periodic solutions ...
The existence of periodic solutions of second-order differential equations has been studied permanen...
summary:A periodic boundary value problem for nonlinear differential equation of the second order is...
In this paper we present sufficient conditions for the existence of periodic solutions to some nonl...
summary:A periodic boundary value problem for nonlinear differential equation of the second order is...
In this paper, we study the existence of periodic solutions to nonlinear fully third-order different...
In this paper we consider the existence of periodic solutions of one-parameter and two-parameter fam...
AbstractThis note is a generalization of one of a paper by Mehri and Hamedani. Under suitable condit...
We study the existence of periodic solutions for a nonlinear second order system of ordinary differe...
AbstractThe paper deals with the second order differential systems with periodic boundary conditions...
AbstractWe consider vector differential equtions x″ + g(t, x, x′) = f(t), x ϵ Rn, and show the exist...