Title of article :
Analytical Solution of Steady State Substrate Concentration of an Immobilized Enzyme Kinetics by Laplace Transform Homotopy Perturbation Method
Author/Authors :
Devipriya, G Department of Mathematics - Stella Maris College - Chennai - 600 086., India
Abstract :
The nonlinear dynamical system modeling the immobilized enzyme kinetics with
Michaelis-Menten mechanism for an irreversible reaction without external mass transfer re-
sistance is considered. Laplace transform homotopy perturbation method is used to obtain
the approximate solution of the governing nonlinear differential equation, which consists in
determining the series solution convergent to the exact solution or enabling to built the
approximate solution of the problem. Numerical solutions are obtained and the results are
discussed graphically. The method allows to determine the solution in form of the continu-
ous function, which is signicant for the analysis of the steady state dimensionless substrate
concentration with dimensionless distance on the different support materials.
Keywords :
Nonlinear differential equation , Approximate solution , Laplace transform homotopy perturbation method , Numerical simulation
Journal title :
Astroparticle Physics