The goal of this work is to study the forward dynamics of positive solutions for the nonautonomous logistic equation ut − ∆u = λu − b(t)up, with p > 1, b(t) > 0, for all t ∈ R, limt→∞ b(t) = 0. While the pullback asymptotic behaviour for this equation is now well understood, several different possibilities are realised in the forward asymptotic regime.Ministerio de Educación y Cienci
In this paper, the existence and uniqueness of weak and strong solutions for a non-autonomous nonlo...
In order to determine the dynamics of nonautonomous equations both their forward and pullback behavi...
In this paper, we consider a non-autonomous nonlocal reactiondiffusion equation with a small pertur...
The goal of this work is to study the forward dynamics of positive solutions for the non-autonomous ...
The existence of a pullback attractor for a reaction-diffusion equations in an unbounded domain cont...
Producción CientíficaThe global attractor of a skew product semiflow for a non-autonomous differenti...
The global attractor of a skew product semiflow for a non-autonomous differential equation describe...
Producción CientíficaAs it is well-known, the forwards and pullback dynamics are in general unrelate...
AbstractWe analyse the dynamics of the non-autonomous nonlinear reaction–diffusion equationut−Δu=f(t...
In this paper we prove the existence and uniqueness of a weak solution for a non-autonomous reaction...
Lotka-Volterra systems have been extensively studied by many authors, both in the autonomous and no...
Producción CientíficaIn this paper, we describe in detail the global and cocycle attractors related ...
In this paper we study in detail the geometrical structure of global pullback and forwards attracto...
In this paper we consider a dissipative damped wave equation with non-autonomous damping of the for...
The main aim of this paper is to analyse the asymptotic behaviour of a non-autonomous integrodiffere...
In this paper, the existence and uniqueness of weak and strong solutions for a non-autonomous nonlo...
In order to determine the dynamics of nonautonomous equations both their forward and pullback behavi...
In this paper, we consider a non-autonomous nonlocal reactiondiffusion equation with a small pertur...
The goal of this work is to study the forward dynamics of positive solutions for the non-autonomous ...
The existence of a pullback attractor for a reaction-diffusion equations in an unbounded domain cont...
Producción CientíficaThe global attractor of a skew product semiflow for a non-autonomous differenti...
The global attractor of a skew product semiflow for a non-autonomous differential equation describe...
Producción CientíficaAs it is well-known, the forwards and pullback dynamics are in general unrelate...
AbstractWe analyse the dynamics of the non-autonomous nonlinear reaction–diffusion equationut−Δu=f(t...
In this paper we prove the existence and uniqueness of a weak solution for a non-autonomous reaction...
Lotka-Volterra systems have been extensively studied by many authors, both in the autonomous and no...
Producción CientíficaIn this paper, we describe in detail the global and cocycle attractors related ...
In this paper we study in detail the geometrical structure of global pullback and forwards attracto...
In this paper we consider a dissipative damped wave equation with non-autonomous damping of the for...
The main aim of this paper is to analyse the asymptotic behaviour of a non-autonomous integrodiffere...
In this paper, the existence and uniqueness of weak and strong solutions for a non-autonomous nonlo...
In order to determine the dynamics of nonautonomous equations both their forward and pullback behavi...
In this paper, we consider a non-autonomous nonlocal reactiondiffusion equation with a small pertur...