ON INVERSE ITERATION PROCESS FOR FINDING ALL ROOTS OF NONLINEAR EQUATIONS WITH APPLICATIONS

Author:

SHAMS MUDASSIR1,RAFIQ NAILA2,KAUSAR NASREEN3,AGARWAL PRAVEEN456,MIR NAZIR AHMAD2,EL-KANJ NASSER7

Affiliation:

1. Department of Mathematics and Statistics, Riphah International University, Islamabad 44000, Pakistan

2. Department of Mathematics, NUML, Islamabad, Pakistan

3. Department of Mathematics, Yildiz Technical University, Faculty of Arts and Science, Esenler 34210, Istanbul, Turkey

4. Department of Mathematics, Anand International, College of Engineering, Jaipur 303012, Rajasthan, India

5. Peoples’ Friendship University of Russia (RUDN University), 6 Miklukho-Maklaya Street, 117198 Moscow, Russian Federation

6. Nonlinear Dynamics Research Center (NDRC), Ajman University, Ajman, UAE

7. College of Business Administration, American University of the Middle East, Egaila 54200, Kuwait

Abstract

In this work, we construct a new family of inverse iterative numerical technique for extracting all roots of nonlinear equation simultaneously. Convergence analysis verifies that the proposed family of methods has local 10th-order convergence. Among the test models investigated are blood rheology, a fractional nonlinear equation model, fluid permeability in biogels, and beam localization models. In comparison to other methods, the family of inverse simultaneous iterative techniques gets initial estimations to exact roots within a given tolerance while using less function evaluations in each iterative step. Numerical results, basins of attraction for fractional nonlinear equation, residual graphs are presented in detail for the simultaneous iterative techniques. The newly developed simultaneous iterative techniques were thoroughly investigated and proven to be efficient, robust, and authentic in their domain.

Funder

NBHM

Ministry of Science and High Education of the Russian Federation and the Peoples Friendship University of Russia

Publisher

World Scientific Pub Co Pte Ltd

Subject

Applied Mathematics,Geometry and Topology,Modeling and Simulation

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