Numerical Simulation of One Step Block Method for Treatment of Second Order Forced Motions in Mass-Spring Systems
J. Sabo, T. Y. Kyagya, W. J. Vashawa
Asian Journal of Research and Reviews in Physics · pp. 1–11 · Published 1 Oct 2021
10.9734/ajr2p/2021/v5i230157Abstract
This paper discuss the numerical simulation of one step block method for treatment of second order forced motions in mass-spring systems of initial value problems. The one step block method has been developed with the introduction of off-mesh point at both grid and off- grid points using interpolation and collocation procedure to increase computational burden which may jeopardize the accuracy of the method in terms of error. The basic properties of the one step block method was established and numerical analysis shown that the one step block method was found to be consistent, convergent and zero-stable. The one step block method was simulated on three highly stiff mathematical problems to validate the accuracy of the block method without reduction, and obviously the results shown are more accurate over the existing method in literature.
Cited by 2
Yusuf Skwame, Donald J. Zirra, Sabo John · Physical Science International Journal · 2024
Vagif Ibrahimov, Mehriban Imanova · WSEAS TRANSACTIONS ON SYSTEMS · 2025
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