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Analysis of some dynamical systems by combination of two different methods
by
Ganie, Abdul Hamid
, Zidan, A. M.
, Hassani, Murad Khan
, Shah, Rasool
, Akgül, Ali
in
639/705
/ 639/766
/ Caputo derivative
/ Differential equations
/ Elzaki transformation
/ Humanities and Social Sciences
/ Iterative methods
/ Mathematics
/ multidisciplinary
/ New iterative method
/ Partial differential equations
/ Science
/ Science (multidisciplinary)
/ System of partial differential equations
2024
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Analysis of some dynamical systems by combination of two different methods
by
Ganie, Abdul Hamid
, Zidan, A. M.
, Hassani, Murad Khan
, Shah, Rasool
, Akgül, Ali
in
639/705
/ 639/766
/ Caputo derivative
/ Differential equations
/ Elzaki transformation
/ Humanities and Social Sciences
/ Iterative methods
/ Mathematics
/ multidisciplinary
/ New iterative method
/ Partial differential equations
/ Science
/ Science (multidisciplinary)
/ System of partial differential equations
2024
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Do you wish to request the book?
Analysis of some dynamical systems by combination of two different methods
by
Ganie, Abdul Hamid
, Zidan, A. M.
, Hassani, Murad Khan
, Shah, Rasool
, Akgül, Ali
in
639/705
/ 639/766
/ Caputo derivative
/ Differential equations
/ Elzaki transformation
/ Humanities and Social Sciences
/ Iterative methods
/ Mathematics
/ multidisciplinary
/ New iterative method
/ Partial differential equations
/ Science
/ Science (multidisciplinary)
/ System of partial differential equations
2024
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Analysis of some dynamical systems by combination of two different methods
Journal Article
Analysis of some dynamical systems by combination of two different methods
2024
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Overview
In this study, we introduce a novel iterative method combined with the Elzaki transformation to address a system of partial differential equations involving the Caputo derivative. The Elzaki transformation, known for its effectiveness in solving differential equations, is incorporated into the proposed iterative approach to enhance its efficiency. The system of partial differential equations under consideration is characterized by the presence of Caputo derivatives, which capture fractional order dynamics. The developed method aims to provide accurate and efficient solutions to this complex mathematical system, contributing to the broader understanding of fractional calculus applications in the context of partial differential equations. Through numerical experiments and comparisons, we demonstrate the efficacy of the proposed Elzaki-transform-based iterative method in handling the intricate dynamics inherent in the given system. The study not only showcases the versatility of the Elzaki transformation but also highlights the potential of the developed iterative technique for addressing similar problems in various scientific and engineering domains.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
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