AbstractFor the equation, N˙(t)=r(t)N(t)1+[N(t)]γ−b(t)N(t)−a(t)N(g(t)),we obtain the following results: boundedness of all positive solutions, extinction, and persistence conditions. The proofs employ recent results in the theory of linear delay equations with positive and negative coefficients
AbstractThis paper studies a class of time-delay reaction–diffusion systems modeling the dynamics of...
We introduce delay dynamics to an ordinary differential equation model of tumour growth based upon v...
AbstractA reaction–diffusion population model with a general time-delayed growth rate per capita is ...
AbstractFor the equation, N˙(t)=r(t)N(t)1+[N(t)]γ−b(t)N(t)−a(t)N(g(t)),we obtain the following resul...
Abst ract--The logistic delay equation with a linear delay harvesting term N(t) = r(t)N(t) a- ~ bk...
We discuss the global dynamics of some logistic models governed by delay-differential equations. We ...
We propose an alternative delayed population growth difference equation model based on a modificatio...
We derive an alternative expression for a delayed logistic equation in which the rate of change in t...
AbstractIn this article we study the global stability in reaction-diffusion models for single-specie...
We consider the class of delay differential equations as a model for scalar growth processes with in...
AbstractFirst, we systematize earlier results on the global stability of the model x˙+μx=f(x(⋅−τ)) o...
We analyze a differential equation, describing the maturation of a stem cell population, with a stat...
A reaction-diffusion population model with a general time-delayed growth rate per capita is consider...
A reaction-diffusion population model with a general time-delayed growth rate per capita is consider...
We investigate a delay differential equation system version of a model designed to describe finite t...
AbstractThis paper studies a class of time-delay reaction–diffusion systems modeling the dynamics of...
We introduce delay dynamics to an ordinary differential equation model of tumour growth based upon v...
AbstractA reaction–diffusion population model with a general time-delayed growth rate per capita is ...
AbstractFor the equation, N˙(t)=r(t)N(t)1+[N(t)]γ−b(t)N(t)−a(t)N(g(t)),we obtain the following resul...
Abst ract--The logistic delay equation with a linear delay harvesting term N(t) = r(t)N(t) a- ~ bk...
We discuss the global dynamics of some logistic models governed by delay-differential equations. We ...
We propose an alternative delayed population growth difference equation model based on a modificatio...
We derive an alternative expression for a delayed logistic equation in which the rate of change in t...
AbstractIn this article we study the global stability in reaction-diffusion models for single-specie...
We consider the class of delay differential equations as a model for scalar growth processes with in...
AbstractFirst, we systematize earlier results on the global stability of the model x˙+μx=f(x(⋅−τ)) o...
We analyze a differential equation, describing the maturation of a stem cell population, with a stat...
A reaction-diffusion population model with a general time-delayed growth rate per capita is consider...
A reaction-diffusion population model with a general time-delayed growth rate per capita is consider...
We investigate a delay differential equation system version of a model designed to describe finite t...
AbstractThis paper studies a class of time-delay reaction–diffusion systems modeling the dynamics of...
We introduce delay dynamics to an ordinary differential equation model of tumour growth based upon v...
AbstractA reaction–diffusion population model with a general time-delayed growth rate per capita is ...