AbstractIn this paper, we establish sufficient conditions for the existence of solutions for some partial functional differential equations with state-dependent delay; we assume that the linear part is not necessarily densely defined and satisfies the well-known Hille–Yosida conditions. Our approach is based on a nonlinear alternative of Leray–Schauder type and integrated semigroup theory. An application is provided to a reaction–diffusion equation with state-dependent delay
Differential equations with state-dependent delays define a semiflow of continuously differentiable ...
Abstract: In this work we study the existence and uniqueness of solutions for some state dependent d...
The properties of stability of a compact set $K$ which is positively invariant for a semiflow $(\W\t...
AbstractIn this paper, we establish sufficient conditions for the existence of solutions for some pa...
Our aim in this work is to study the existence of solutions of a functional differential inclusion w...
AbstractWe prove the equivalence of the well-posedness of a partial differential equation with delay...
AbstractIn this paper we show the well-posedness of the following constant delay equation: u̇(t)=Au(...
AbstractWe study existence and uniqueness of solutions for linear partial differential equations wit...
AbstractIn this paper, we establish the existence of mild solutions for a class of impulsive abstrac...
AbstractIn this paper we are concerned with the exponential asymptotic stability of the solution of ...
AbstractWe present an approach for the resolution of a class of differential equations with state-de...
AbstractIn this paper we will be concerned with the abstract semilinear equation x(Φ)(t) = Ax(Φ)(t) ...
AbstractWe characterize the asymptotic behavior of a class of functional differential equations with...
AbstractSufficient criteria are established for the existence of T-periodic solutions of a family of...
AbstractThis work is an attempt to treat partial differential equations with discrete (concentrated)...
Differential equations with state-dependent delays define a semiflow of continuously differentiable ...
Abstract: In this work we study the existence and uniqueness of solutions for some state dependent d...
The properties of stability of a compact set $K$ which is positively invariant for a semiflow $(\W\t...
AbstractIn this paper, we establish sufficient conditions for the existence of solutions for some pa...
Our aim in this work is to study the existence of solutions of a functional differential inclusion w...
AbstractWe prove the equivalence of the well-posedness of a partial differential equation with delay...
AbstractIn this paper we show the well-posedness of the following constant delay equation: u̇(t)=Au(...
AbstractWe study existence and uniqueness of solutions for linear partial differential equations wit...
AbstractIn this paper, we establish the existence of mild solutions for a class of impulsive abstrac...
AbstractIn this paper we are concerned with the exponential asymptotic stability of the solution of ...
AbstractWe present an approach for the resolution of a class of differential equations with state-de...
AbstractIn this paper we will be concerned with the abstract semilinear equation x(Φ)(t) = Ax(Φ)(t) ...
AbstractWe characterize the asymptotic behavior of a class of functional differential equations with...
AbstractSufficient criteria are established for the existence of T-periodic solutions of a family of...
AbstractThis work is an attempt to treat partial differential equations with discrete (concentrated)...
Differential equations with state-dependent delays define a semiflow of continuously differentiable ...
Abstract: In this work we study the existence and uniqueness of solutions for some state dependent d...
The properties of stability of a compact set $K$ which is positively invariant for a semiflow $(\W\t...