Effective root-finding methods for nonlinear equations based on multiplicative calculi (Q670600)
From MaRDI portal
| This is the item page for this Wikibase entity, intended for internal use and editing purposes. Please use this page instead for the normal view: Effective root-finding methods for nonlinear equations based on multiplicative calculi |
scientific article; zbMATH DE number 7037563
| Language | Label | Description | Also known as |
|---|---|---|---|
| English | Effective root-finding methods for nonlinear equations based on multiplicative calculi |
scientific article; zbMATH DE number 7037563 |
Statements
Effective root-finding methods for nonlinear equations based on multiplicative calculi (English)
0 references
18 March 2019
0 references
Summary: In recent studies, papers related to the multiplicative based numerical methods demonstrate applicability and efficiency of these methods. Numerical root-finding methods are essential for nonlinear equations and have a wide range of applications in science and engineering. Therefore, the idea of root-finding methods based on multiplicative and Volterra calculi is self-evident. Newton-Raphson, Halley, Broyden, and perturbed root-finding methods are used in numerical analysis for approximating the roots of nonlinear equations. In this paper, Newton-Raphson methods and consequently perturbed root-finding methods are developed in the frameworks of multiplicative and Volterra calculi. The efficiency of these proposed root-finding methods is exposed by examples, and the results are compared with some ordinary methods. One of the striking results of the proposed method is that the rate of convergence for many problems are considerably larger than the original methods.
0 references
0 references
0 references