On explicit ninth‐order, two‐step methods addressing y″=f(x,y)

Author:

Jerbi Houssem1,Aoun Sondess Ben2,Alshammari Obaid3,Simos Theodore E.4567ORCID,Tsitouras Ch.8,Kchaou Mourad3ORCID

Affiliation:

1. Department of Industrial Engineering, College of Engineering University of Hail Ha'il Saudi Arabia

2. Department of Computer Engineering, College of Computer Science and Engineering University of Hail Ha'il Saudi Arabia

3. Department of Electrical Engineering, College of Engineering University of Hail Ha'il Saudi Arabia

4. School of Mechanical Engineering, Xiasha Hangzhou Dianzi University Hangzhou China

5. Center for Applied Mathematics and Bioinformatics Gulf University for Science and Technology West Mishref Kuwait

6. Laboratory of Inter‐Disciplinary Problems of Energy Production Ulyanovsk State Technical University Ulyanovsk Russia

7. Section of Mathematics, Department of Civil Engineering Democritus University of Thrace Xanthi Greece

8. General Department, Euripus Campus National and Kapodistrian University of Athens Zografou Greece

Abstract

We present a new family of ninth‐order hybrid explicit Numerov‐type methods, effectively utilizing only eight stages, for solving the special second‐order initial value problem. After applying a number of simplifying assumptions, we arrive to a reduced set of order conditions. Then, we derive an optimal method with constant coefficients that requires one less stage than standard methods found in the literature that use nine stages at this moment. Numerical tests are conducted using quadruple precision arithmetic on several well‐known problems and the superiority of the new method is clear. Finally, in Section 6, a Mathematica package is presented that implements the corresponding algorithm.

Publisher

Wiley

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