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Solving delay differential equations by Adams Moulton block method using divided difference interpolation


Citation

Abdul Majid, Zanariah and San, Hue Chi and Othman, Mohamed and Suleiman, Mohamed B. (2019) Solving delay differential equations by Adams Moulton block method using divided difference interpolation. Menemui Matematik (Discovering Mathematics), 41 (2). pp. 57-67. ISSN 0126-9003

Abstract

This paper will consider a block method for solving delay differential equations (DDEs) using variable step size and order. The coupled block method consists of two and three point block method in a single code presented as in the simple Adams Moulton type. The code will compute the numerical solutions at two and three new values simultaneously at each of the integration step. The approximation of the delay term is estimated using the divided difference interpolation. The P-stability and Q-stability regions are also illustrated. The numerical results for the coupled block method were superior compared to the existing block method. It is clearly shown that the code is able to produce good results for solving DDEs.


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Additional Metadata

Item Type: Article
Divisions: Faculty of Science
Institute for Mathematical Research
Publisher: Malaysian Mathematical Society
Keywords: Block method; Variable step size and order; Delay differential equations
Depositing User: Mr. Sazali Mohamad
Date Deposited: 16 Dec 2020 00:50
Last Modified: 16 Dec 2020 00:50
URI: http://psasir.upm.edu.my/id/eprint/82205
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