Title of article :
Numerical Modeling for Nonlinear Biochemical Reaction Networks
Author/Authors :
ZAFAR, Z.A Department of Mathematics - University of Engineering and Technology - Lahore - Pakistan , MUSHTAQ, M Department of Mathematics - University of Engineering and Technology - Lahore - Pakistan , RAFIQ, M Department of Mathematics - University of Engineering and Technology - Lahore - Pakistan , REHAN, K Department of Mathematics - University of Engineering and Technology - KSK Campus - Pakistan
Abstract :
Nowadays, numerical models have great importance in every field
of science, especially for solving the nonlinear differential
equations, partial differential equations, biochemical reactions, etc.
The total time evolution of the reactant concentrations in the basic
enzyme-substrate reaction is simulated by the Runge-Kutta of order
four (RK4) and by Non-standard finite difference (NSFD) method.
ANSFD model has been constructed for the biochemical reaction
problem and numerical experiments are performed for different
values of discretization parameter ‘h’. The results are compared
with the well–known numerical scheme, i.e. RK4. Unlike RK4
which fails for large time steps, the developed scheme NSFD gives
results that converge to true steady states for any time step used.
Keywords :
RK4 method , NSFD method , Michaelis–Menten model
Journal title :
Astroparticle Physics