We study the number of periodic solutions of linear, Riccati and Abel dynamic equations in the time scales setting. In this way, we recover known results for corresponding differential equations and obtain new results for associated difference equations. In particular, we prove that there is no upper bound for the number of isolated periodic solutions of Abel difference equations. One of the main tools introduced to get our results is a suitable Melnikov function. This is the first time that Melnikov functions are used for dynamic equations on time scales
We consider non-autonomous N-periodic discrete dynamical systems of the form (Formula presented.) ha...
This paper gives the definition and analysis of Abel dynamic equations on a general time scale. As s...
We consider the generalization of two classical periodic problems to the context of time scales. On ...
We study the number of periodic solutions of linear, Riccati and Abel dynamic equations in the time ...
AbstractFor a class of polynomial non-autonomous differential equations of degree n, we use phase pl...
AbstractIn this paper, we investigate the differential equation x˙=S(x,t)=A(t)xm+B(t)xn+C(t)xl, wher...
AbstractThis paper is devoted to prove two unexpected properties of the Abel equation dz/dt=z3+B(t)z...
AbstractA solution of the Abel equation x˙=A(t)x3+B(t)x2 such that x(0)=x(1) is called a periodic or...
This paper is devoted to prove two unexpected properties of the Abel equation dz/dt = z 3 +B(t)z 2 +...
17 pages; no figuresInternational audienceA solution of the Abel equation $\dot{x}=A(t)x^3+B(t)x^2$ ...
This paper deals with the problem of finding upper bounds on the number of periodic solutions of a ...
In this paper, sufficient criteria are established for the existence of periodic solutions of some f...
AbstractWe present various criteria for the non-existence of positive periodic solutions of generali...
In this work, we study Abel dynamic equations of the first and the second kind. After a brief introd...
This paper gives the definition and analysis of Abel dynamic equations on a general time scale. As s...
We consider non-autonomous N-periodic discrete dynamical systems of the form (Formula presented.) ha...
This paper gives the definition and analysis of Abel dynamic equations on a general time scale. As s...
We consider the generalization of two classical periodic problems to the context of time scales. On ...
We study the number of periodic solutions of linear, Riccati and Abel dynamic equations in the time ...
AbstractFor a class of polynomial non-autonomous differential equations of degree n, we use phase pl...
AbstractIn this paper, we investigate the differential equation x˙=S(x,t)=A(t)xm+B(t)xn+C(t)xl, wher...
AbstractThis paper is devoted to prove two unexpected properties of the Abel equation dz/dt=z3+B(t)z...
AbstractA solution of the Abel equation x˙=A(t)x3+B(t)x2 such that x(0)=x(1) is called a periodic or...
This paper is devoted to prove two unexpected properties of the Abel equation dz/dt = z 3 +B(t)z 2 +...
17 pages; no figuresInternational audienceA solution of the Abel equation $\dot{x}=A(t)x^3+B(t)x^2$ ...
This paper deals with the problem of finding upper bounds on the number of periodic solutions of a ...
In this paper, sufficient criteria are established for the existence of periodic solutions of some f...
AbstractWe present various criteria for the non-existence of positive periodic solutions of generali...
In this work, we study Abel dynamic equations of the first and the second kind. After a brief introd...
This paper gives the definition and analysis of Abel dynamic equations on a general time scale. As s...
We consider non-autonomous N-periodic discrete dynamical systems of the form (Formula presented.) ha...
This paper gives the definition and analysis of Abel dynamic equations on a general time scale. As s...
We consider the generalization of two classical periodic problems to the context of time scales. On ...