Application of direct meshless local Petrov–Galerkin (DMLPG) method for some Turing-type models

M Ilati, M Dehghan - Engineering with Computers, 2017 - Springer
Mathematical modeling of pattern formation in developmental biology leads to non-linear
reaction–diffusion systems which are usually highly stiff in both diffusion and reaction terms …

Application of direct meshless local Petrov–Galerkin (DMLPG) method for some Turing-type models

M Ilati, M Dehghan - Engineering with Computers, 2016 - infona.pl
Mathematical modeling of pattern formation in developmental biology leads to non-linear
reaction–diffusion systems which are usually highly stiff in both diffusion and reaction terms …

Application of direct meshless local Petrov---Galerkin (DMLPG) method for some Turing-type models

M Ilati, M Dehghan - Engineering with Computers, 2017 - dl.acm.org
Mathematical modeling of pattern formation in developmental biology leads to non-linear
reaction---diffusion systems which are usually highly stiff in both diffusion and reaction terms …

Application of direct meshless local Petrov–Galerkin (DMLPG) method for some Turing-type models

M Ilati, M Dehghan - Engineering with Computers, 2017 - elibrary.ru
Mathematical modeling of pattern formation in developmental biology leads to non-linear
reaction–diffusion systems which are usually highly stiff in both diffusion and reaction terms …

Application of direct meshless local Petrov-Galerkin (DMLPG) method for some Turing-type models

M Ilati, M Dehghan - Engineering with Computers, 2017 - search.proquest.com
Mathematical modeling of pattern formation in developmental biology leads to non-linear
reaction-diffusion systems which are usually highly stiff in both diffusion and reaction terms …