Please use this identifier to cite or link to this item: http://ir.futminna.edu.ng:8080/jspui/handle/123456789/13934
Title: Approximate Solution of Typhoid Fever Model by Variational Iteration Method
Authors: Adebisi, A. F.
Peter, O. J.
Ayoola, T. A.
Oguntolu, F. A.
Ishola, C. Y.
Keywords: Typhoid Fever
Variational Iteration Method
Runge-Kutta Method
Issue Date: Sep-2018
Publisher: ATBU Journal of Science, Technology and Education
Citation: Adebisi, A., Peter, O. J., Ayoola, T. A., Oguntolu, F. A., & Ishola, C. Y. (2018). Approximate solution of typhoid fever model by variational iteration method. Journal of Science, Technology and Education (JOSTE), 6(3), 254-265.
Abstract: In this paper, a deterministic mathematical model involving the transmission dynamics of typhoid fever is presented and studied. Basic idea of the disease transmission using compartmental modeling is discussed. The aim of this paper is to apply Variational Iteration Method (VIM) to solve typhoid fever model for a given constant population. This mathematical model is described by nonlinear first order ordinary differential equations. First, we find the solution of the model by using Variation Iteration Method (VIM). The validity of the VIM in solving the model is established by classical fourth-order Runge-Kutta method (RK4) implemented in Maple 18. In order to show the efficiency of the method we compare the solutions obtained by VIM and RK4. We illustrated the profiles of the solutions of each of the compartments, from which we speculate that the VIM and RK4 solutions agreed well
URI: http://www.atbuftejoste.com/index.php/joste/article/view/610/0
http://repository.futminna.edu.ng:8080/jspui/handle/123456789/13934
ISSN: 2277-0011
Appears in Collections:Mathematics

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