summary:We study systems of reaction-diffusion equations with discontinuous spatially distributed hysteresis on the right-hand side. The input of the hysteresis is given by a vector-valued function of space and time. Such systems describe hysteretic interaction of non-diffusive (bacteria, cells, etc.) and diffusive (nutrient, proteins, etc.) substances leading to formation of spatial patterns. We provide sufficient conditions under which the problem is well posed in spite of the assumed discontinuity of hysteresis. These conditions are formulated in terms of geometry of the manifolds defining the hysteresis thresholds and the spatial profile of the initial data
We survey recent results on reaction-diffusion equations with discontinuous hysteretic nonlinearitie...
summary:We consider a reaction-diffusion system of the activator-inhibitor type with boundary condit...
summary:Reaction-diffusion systems are studied under the assumptions guaranteeing diffusion driven i...
summary:We study systems of reaction-diffusion equations with discontinuous spatially distributed hy...
summary:We study systems of reaction-diffusion equations with discontinuous spatially distributed hy...
We study systems of reaction-diffusion equations with discontinuous spatially distributed hysteresis...
We study systems of reaction-diffusion equations with discontinuous spatially distributed hysteresis...
This paper deals with reaction-diffusion equations involving a hysteretic discontinuity in the sourc...
This paper deals with reaction-diffusion equations involving a hysteretic discontinuity in the sourc...
This thesis is concerned with the study of a reaction-diffusion system with a nonlinearity that obey...
The paper deals with reaction-diffusion equations involving a hysteretic discontinuity in the source...
The paper deals with reaction-diffusion equations involving a hysteretic discontinuity in the source...
Abstract. We survey recent results on reaction-diffusion equations with discon-tinuous hysteretic no...
Turing suggested that, under certain conditions, chemicals can react and diffuse in such a way as to...
We survey recent results on reaction-diffusion equations with discontinuous hysteretic nonlinearitie...
We survey recent results on reaction-diffusion equations with discontinuous hysteretic nonlinearitie...
summary:We consider a reaction-diffusion system of the activator-inhibitor type with boundary condit...
summary:Reaction-diffusion systems are studied under the assumptions guaranteeing diffusion driven i...
summary:We study systems of reaction-diffusion equations with discontinuous spatially distributed hy...
summary:We study systems of reaction-diffusion equations with discontinuous spatially distributed hy...
We study systems of reaction-diffusion equations with discontinuous spatially distributed hysteresis...
We study systems of reaction-diffusion equations with discontinuous spatially distributed hysteresis...
This paper deals with reaction-diffusion equations involving a hysteretic discontinuity in the sourc...
This paper deals with reaction-diffusion equations involving a hysteretic discontinuity in the sourc...
This thesis is concerned with the study of a reaction-diffusion system with a nonlinearity that obey...
The paper deals with reaction-diffusion equations involving a hysteretic discontinuity in the source...
The paper deals with reaction-diffusion equations involving a hysteretic discontinuity in the source...
Abstract. We survey recent results on reaction-diffusion equations with discon-tinuous hysteretic no...
Turing suggested that, under certain conditions, chemicals can react and diffuse in such a way as to...
We survey recent results on reaction-diffusion equations with discontinuous hysteretic nonlinearitie...
We survey recent results on reaction-diffusion equations with discontinuous hysteretic nonlinearitie...
summary:We consider a reaction-diffusion system of the activator-inhibitor type with boundary condit...
summary:Reaction-diffusion systems are studied under the assumptions guaranteeing diffusion driven i...