Benito, J.J.García, A.Gavete, L.Negreanu Pruna, MihaelaUreña, F.Vargas, A. M.2023-06-172023-06-172020-040955799710.1016/j.enganabound.2020.01.002https://hdl.handle.net/20.500.14352/7731In the present paper we propose the Generalized Finite Difference Method (GFDM) for numerical solution of a cross-diffusion system with chemotactic terms. We derive the discretization of the system using a GFD scheme in order to prove and illustrate that the uniform stability behavior/ convergence of the continuous model is also preserved for the discrete model. We prove the convergence of the explicit method and give the conditions of convergence. Extensive numerical experiments are presented to illustrate the accuracy, efficiency and robustness of the GFDM.engOn the numerical solution to a parabolic-elliptic system with chemotactic and periodic terms using Generalized Finite Differencesjournal articlehttps://doi.org/10.1016/j.enganabound.2020.01.002https://www.sciencedirect.com/science/article/pii/S0955799720300023open access519.6Chemotaxis modelsParabolic-elliptic systemsGeneralized Finite Difference methodMétodo de las diferencias finitas generalizadasAnálisis numéricoEcuaciones diferencialesBiología molecular (Química)1206 Análisis Numérico1202.07 Ecuaciones en Diferencias