Two-Step Hybrid Block Method for Solving Second Order Initial Value Problem of Ordinary Differential Equations

Author:

Jimoh AbdulAzeez K.1

Affiliation:

1. Department of Mathematics and Statistics, Faculty of Pure and Applied Sciences, Kwara State University, Malete, Nigeria

Abstract

A new zero-stable two-step hybrid block method for solving second order initial value problems of ordinary differential equations directly is derived and proposed. In the derivation of the method, the assumed power series solution is interpolated at the initial and the hybrid points while its second ordered derivative is collocated at all the nodal and selected off-step points in the interval of consideration. The relevant properties of the method were examined and the method was found to be zero-stable, consistent and convergent. A comparison of the results by the method with the exact solutions and other results in literature shows that the method is accurate, simple and effective in solving the class of problems considered.

Publisher

Earthline Publishers

Reference19 articles.

1. Abdelrahim, R., Omar, Z., & Kuboye, J. O. (2016). New hybrid block method with three off-step points for solving first order ordinary differential equations. American Journal of Applied Sciences, 1(3), 3-6.

2. Anake, T. A., Awoyemi, D. O., & Adesanya, A. O. (2012). One-step implicit hybrid block method for the direct solution of general second order ordinary differential equations. IAENG International Journal of Applied Mathematics, 42(4), 224-228.

3. Areo, E. A., & Adeniyi, R. B. (2014). Block implicit one-step method for the numerical integration of initial value problems in ordinary differential equations. International Journal of Mathematics and Statistics Studies, 2(3), 4-13.

4. Awoyemi, D. O. (1999). A class of continuous method for general second order initial value problems in ordinary differential equations. Journal of Computer Mathematics, 72, 29-37. https://doi.org/10.1080/00207169908804832

5. Bolaji, B. A. (2017). A zero-stable hybrid linear multistep method for the numerical solution of first order ordinary differential equations. American Journal of Engineering and Natural Sciences (AJENS), 1(2), 1-7.

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