New highly accurate iterative method of third order convergence for finding the multiple roots of nonlinear equations

We present a new third order convergence iterative method for m multiple roots of nonlinear equation. The proposed method requires one evaluation of function and two evaluations of the first derivative of function. In numerical tests exhibit that the present method provides provides high accuracy n...

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Main Authors: Jamaludin, Nur Alif Akid, Nik Long, Nik Mohd Asri, Ismail, Fudziah
Format: Article
Language:English
Published: Akademi Sains Malaysia 2019
Online Access:http://psasir.upm.edu.my/id/eprint/81469/1/New%20highly%20accurate%20iterative%20method%20of%20third%20order%20convergence%20for%20finding%20the%20multiple%20roots%20of%20nonlinear%20equations.pdf
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author Jamaludin, Nur Alif Akid
Nik Long, Nik Mohd Asri
Ismail, Fudziah
author_facet Jamaludin, Nur Alif Akid
Nik Long, Nik Mohd Asri
Ismail, Fudziah
author_sort Jamaludin, Nur Alif Akid
collection UPM
description We present a new third order convergence iterative method for m multiple roots of nonlinear equation. The proposed method requires one evaluation of function and two evaluations of the first derivative of function. In numerical tests exhibit that the present method provides provides high accuracy numerical result as compared to other methods. The stability of the dynamical behaviour of iterative method is investigated by displaying the basin of attraction. Basin of attraction displays less black points which give us wider choices of initial guess in computation.
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spelling upm.eprints-814692021-01-30T18:28:07Z http://psasir.upm.edu.my/id/eprint/81469/ New highly accurate iterative method of third order convergence for finding the multiple roots of nonlinear equations Jamaludin, Nur Alif Akid Nik Long, Nik Mohd Asri Ismail, Fudziah We present a new third order convergence iterative method for m multiple roots of nonlinear equation. The proposed method requires one evaluation of function and two evaluations of the first derivative of function. In numerical tests exhibit that the present method provides provides high accuracy numerical result as compared to other methods. The stability of the dynamical behaviour of iterative method is investigated by displaying the basin of attraction. Basin of attraction displays less black points which give us wider choices of initial guess in computation. Akademi Sains Malaysia 2019 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/81469/1/New%20highly%20accurate%20iterative%20method%20of%20third%20order%20convergence%20for%20finding%20the%20multiple%20roots%20of%20nonlinear%20equations.pdf Jamaludin, Nur Alif Akid and Nik Long, Nik Mohd Asri and Ismail, Fudziah (2019) New highly accurate iterative method of third order convergence for finding the multiple roots of nonlinear equations. ASM Science Journal, 12 (spec.1). pp. 41-49. ISSN 1823-6782 https://www.akademisains.gov.my/asmsj/article/new-highly-accurate-iterative-method-of-third-order-convergence-for-finding-the-multiple-roots-of-non-linear-equations/
spellingShingle Jamaludin, Nur Alif Akid
Nik Long, Nik Mohd Asri
Ismail, Fudziah
New highly accurate iterative method of third order convergence for finding the multiple roots of nonlinear equations
title New highly accurate iterative method of third order convergence for finding the multiple roots of nonlinear equations
title_full New highly accurate iterative method of third order convergence for finding the multiple roots of nonlinear equations
title_fullStr New highly accurate iterative method of third order convergence for finding the multiple roots of nonlinear equations
title_full_unstemmed New highly accurate iterative method of third order convergence for finding the multiple roots of nonlinear equations
title_short New highly accurate iterative method of third order convergence for finding the multiple roots of nonlinear equations
title_sort new highly accurate iterative method of third order convergence for finding the multiple roots of nonlinear equations
url http://psasir.upm.edu.my/id/eprint/81469/1/New%20highly%20accurate%20iterative%20method%20of%20third%20order%20convergence%20for%20finding%20the%20multiple%20roots%20of%20nonlinear%20equations.pdf
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