Higher-order families of multiple root finding methods suitable for non-convergent cases and their dynamics

In this paper, we present many new one-parameter families of classical Rall’s method (modified Newton’s method), Schröder’s method, Halley’s method and super-Halley method for the first time which will converge even though the guess is far away from the desired root or the derivative is small in the...

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Published inMathematical modelling and analysis Vol. 24; no. 3; pp. 422 - 444
Main Authors Behl, Ramandeep, Kanwar, Vinay, Kim, Young Ik
Format Journal Article
LanguageEnglish
Published Vilnius Vilnius Gediminas Technical University 06.06.2019
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ISSN1392-6292
1648-3510
DOI10.3846/mma.2019.026

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Abstract In this paper, we present many new one-parameter families of classical Rall’s method (modified Newton’s method), Schröder’s method, Halley’s method and super-Halley method for the first time which will converge even though the guess is far away from the desired root or the derivative is small in the vicinity of the root and have the same error equations as those of their original methods respectively, for multiple roots. Further, we also propose an optimal family of iterative methods of fourth-order convergence and converging to a required root in a stable manner without divergence, oscillation or jumping problems. All the methods considered here are found to be more effective than the similar robust methods available in the literature. In their dynamical study, it has been observed that the proposed methods have equal or better stability and robustness as compared to the other methods.
AbstractList In this paper, we present many new one-parameter families of classical Rall’s method (modified Newton’s method), Schröder’s method, Halley’s method and super-Halley method for the first time which will converge even though the guess is far away from the desired root or the derivative is small in the vicinity of the root and have the same error equations as those of their original methods respectively, for multiple roots. Further, we also propose an optimal family of iterative methods of fourth-order convergence and converging to a required root in a stable manner without divergence, oscillation or jumping problems. All the methods considered here are found to be more effective than the similar robust methods available in the literature. In their dynamical study, it has been observed that the proposed methods have equal or better stability and robustness as compared to the other methods.
In this paper, we present many new one-parameter families of classical Rall's method (modified Newton's method), Schroder's method, Halley's method and super-Halley method for the first time which will converge even though the guess is far away from the desired root or the derivative is small in the vicinity of the root and have the same error equations as those of their original methods respectively, for multiple roots. Further, we also propose an optimal family of iterative methods of fourth-order convergence and converging to a required root in a stable manner without divergence, oscillation or jumping problems. All the methods considered here are found to be more effective than the similar robust methods available in the literature. In their dynamical study, it has been observed that the proposed methods have equal or better stability and robustness as compared to the other methods. Keywords: multiple roots, Rall's method, Schroder's method, super-Halley's method, basins of attraction. AMS Subject Classification: 41A25; 65H05.
Audience Academic
Author Kim, Young Ik
Kanwar, Vinay
Behl, Ramandeep
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Snippet In this paper, we present many new one-parameter families of classical Rall’s method (modified Newton’s method), Schröder’s method, Halley’s method and...
In this paper, we present many new one-parameter families of classical Rall's method (modified Newton's method), Schroder's method, Halley's method and...
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SubjectTerms basins of attraction
Convergence
Convergence (Mathematics)
Divergence
Family
Iteration (Mathematics)
Iterative methods
Mathematical research
Methods
multiple roots
Nonlinear theories
Parameter modification
Rall’s method
Schröder’s method
super-Halley’s method
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Title Higher-order families of multiple root finding methods suitable for non-convergent cases and their dynamics
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