Numerical solutions of the travelling wave equations that arise in the two-variable Oregonator model for the BZ reaction are obtained for a wide range of parameter values. The main feature is the saddle-node bifurcation in the solutions, giving upper bounds for the existence of travelling waves and indicating the change from the excitable to the subexcitable regimes. The values of the upper bound fm of the stoichiometry factor f in the model are determined in terms of the excitability parameter e for various values of the kinetic parameter q and D, the ratio of the diffusion coefficients of HBrO2 and the oxidized form of the catalyst
This article studies propagating traveling waves in a class of reaction-diffusion systems which incl...
The authors study the existence of wavefront-type travelling wave solutions in the Fickett-Majda mod...
First published as an Advance Article on the web 20th March 2001 The conditions under which chemical...
First published as an Advance Article on the web 7th November 2003 Numerical solutions of the travel...
The effects of an electric field on the travelling waves arising in Belousov–Zhabotinsky systems are...
The Belousov Zhabotinskii reaction is a visually dramatic oscillating phenomenon for which a chemica...
Explicit travelling wave solutions with specified wave speeds are worked out for a model biochemical...
We report the temperature effect on the propagation of excitable traveling waves in a quasi-two-dime...
AbstractThe boundary value problem ∂u∂t′ = u(1 − u − rv) + ∂2u∂x′2∂v∂t′ = − buv + ∂2y∂x′2 where u(− ...
We will discuss travelling wave solutions to reaction-diffusion equations of the form: ut=uxx+ up (1...
A model which describes the effect that a complexation reaction can have on the propagation of react...
By considering the classical Oregonator model, the effect of the main reactants, i.e., bromate and m...
In this paper we study the existence and nonexistence of travelling waves of the reaction-diffusion ...
AbstractThe boundary value problem ∂u∂t′ = u(1 − u − rv) + ∂2u∂x′2∂v∂t′ = − buv + ∂2y∂x′2 where u(− ...
In this paper we study the existence and nonexistence of travelling waves of the reaction-diffusion ...
This article studies propagating traveling waves in a class of reaction-diffusion systems which incl...
The authors study the existence of wavefront-type travelling wave solutions in the Fickett-Majda mod...
First published as an Advance Article on the web 20th March 2001 The conditions under which chemical...
First published as an Advance Article on the web 7th November 2003 Numerical solutions of the travel...
The effects of an electric field on the travelling waves arising in Belousov–Zhabotinsky systems are...
The Belousov Zhabotinskii reaction is a visually dramatic oscillating phenomenon for which a chemica...
Explicit travelling wave solutions with specified wave speeds are worked out for a model biochemical...
We report the temperature effect on the propagation of excitable traveling waves in a quasi-two-dime...
AbstractThe boundary value problem ∂u∂t′ = u(1 − u − rv) + ∂2u∂x′2∂v∂t′ = − buv + ∂2y∂x′2 where u(− ...
We will discuss travelling wave solutions to reaction-diffusion equations of the form: ut=uxx+ up (1...
A model which describes the effect that a complexation reaction can have on the propagation of react...
By considering the classical Oregonator model, the effect of the main reactants, i.e., bromate and m...
In this paper we study the existence and nonexistence of travelling waves of the reaction-diffusion ...
AbstractThe boundary value problem ∂u∂t′ = u(1 − u − rv) + ∂2u∂x′2∂v∂t′ = − buv + ∂2y∂x′2 where u(− ...
In this paper we study the existence and nonexistence of travelling waves of the reaction-diffusion ...
This article studies propagating traveling waves in a class of reaction-diffusion systems which incl...
The authors study the existence of wavefront-type travelling wave solutions in the Fickett-Majda mod...
First published as an Advance Article on the web 20th March 2001 The conditions under which chemical...