Please use this identifier to cite or link to this item: http://irepo.futminna.edu.ng:8080/jspui/handle/123456789/29197
Title: An Investigative Comparison of Higher-Order Runge-Kutta Techniques for Resolving First-Order Differential Equations
Authors: Audu, Khadeejah James
UDOH, Victor James
Garba, Jamiu
Keywords: Runge-Kutta technique, ordinary differential equations, numerical integration,
error analysis, computational comparison
Issue Date: 19-Feb-2025
Publisher: Fırat University Graduate School of Applied and Natural Sciences, Turkiye
Citation: Khadeejah James Audu, Victor James Udoh & Jamiu Garba. (2025). An Investigative Comparison of Higher-Order Runge-Kutta Techniques for Resolving First-Order Differential Equations. Turkish Journal of Science and Technology, 20(1), 141-158.
Abstract: In the context of solving first-order ordinary differential equations (ODEs), this paper thoroughly compares various higher-order Runge-Kutta methods. Reviewing the effectiveness, precision, and practicality of several Runge-Kutta schemes and highlighting their usage in numerical approximation is the main goal of the research. The study explores traditional approaches, including the fifth-order, six-stage Runge-Kutta (RK56), the sixth-order, seven-stage Runge-Kutta (RK67), and the seventh-order, nine-stage Runge-Kutta (RK79), with the goal of offering a comprehensive comprehension of their individual advantages and disadvantages. In order to help academics and practitioners choose the best approach based on the features of the problem, comparative benchmarks are constructed, utilizing both theoretical underpinnings and real-world implementations. Robustness evaluations and sensitivity analysis complement the comparison research by illuminating how flexible these techniques are in various context. The results of this study provide important new understandings of how higherorder Runge-Kutta methods function and provide a thorough manual for applying them to solve first-order differential problems in a variety of scientific and engineering fields. The study’s examination of three higher order Runge-Kutta algorithms reveals that the RK56 is more effective at solving first order ODEs
Description: A journal publication
URI: http://irepo.futminna.edu.ng:8080/jspui/handle/123456789/29197
ISSN: https://doi.org/10.55525/tjst.1433935
Appears in Collections:Mathematics

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