New technique for solving autonomous equations

Joint Authors

Inadi M. O.
Tawfiq, Lama Naji Muhammad

Source

Ibn al-Haitham Journal for Pure and Applied Science

Issue

Vol. 32, Issue 2 (31 Aug. 2019), pp.123-130, 8 p.

Publisher

University of Baghdad College of Education for Pure Science / Ibn al-Haitham

Publication Date

2019-08-31

Country of Publication

Iraq

No. of Pages

8

Main Subjects

Mathematics

Topics

Abstract EN

This paper demonstrates a new technique based on a combined form of the new transform method with homotopy perturbation method to find the suitable accurate solution of autonomous Equations with initial condition.

This technique is called the transform homotopy perturbation method (THPM).

It can be used to solve the problems without resorting to the frequency domain.

The implementation of the suggested method demonstrates the usefulness in finding exact solution for linear and nonlinear problems.

The practical results show the efficiency and reliability of technique and easier implemented than HPM in finding exact solutions.

Finally, all algorithms in this paper implemented in MATLAB version 7.12.

American Psychological Association (APA)

Inadi M. O.& Tawfiq, Lama Naji Muhammad. 2019. New technique for solving autonomous equations. Ibn al-Haitham Journal for Pure and Applied Science،Vol. 32, no. 2, pp.123-130.
https://search.emarefa.net/detail/BIM-899817

Modern Language Association (MLA)

Inadi M. O.& Tawfiq, Lama Naji Muhammad. New technique for solving autonomous equations. Ibn al-Haitham Journal for Pure and Applied Science Vol. 32, no. 2 (Aug. 2019), pp.123-130.
https://search.emarefa.net/detail/BIM-899817

American Medical Association (AMA)

Inadi M. O.& Tawfiq, Lama Naji Muhammad. New technique for solving autonomous equations. Ibn al-Haitham Journal for Pure and Applied Science. 2019. Vol. 32, no. 2, pp.123-130.
https://search.emarefa.net/detail/BIM-899817

Data Type

Journal Articles

Language

English

Notes

Includes bibliographical references : p. 129-130

Record ID

BIM-899817