Numerical Strategy For The System Of Second Order Ivps Using RK Method Based On Centroidal Mean
DOI10.1080/00207160304668zbMath1018.65094OpenAlexW2006017890MaRDI QIDQ4805937
E. C. Henry Amirtharaj, K. Murugesan, D. Paul Dhayabaran, David J. Evans
Publication date: 11 September 2003
Published in: International Journal of Computer Mathematics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1080/00207160304668
Nonlinear ordinary differential equations and systems (34A34) Numerical methods for initial value problems involving ordinary differential equations (65L05) Multistep, Runge-Kutta and extrapolation methods for ordinary differential equations (65L06)
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Cites Work
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- Explicit Runge–Kutta (–Nyström) Methods with Reduced Phase Errors for Computing Oscillating Solutions
- A comparison of nonlinear trapezoidal formulae for solving initial value problems
- A two-step method with phase-lag of order infinity for the numerical integration of second order periodic initial-value problem
- Analysis of different second order systems via runge-kutta method
- Analysis of non-linear singular system from fluid dynamics using extended runge-kutta methods
- A Fourth Order Embedded Runge-Kutta RKACeM(4,4) Method Based on Arithmetic and Centroidal Means with Error Control
- A comparison of extended runge-kutta formulae based on variety of means to solve system of ivps
- Analysis of second order multivariate linear system using single term walsh series technique and runge kutta method
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