Algebraic computational methods for solving three nonlinear vital models fractional in mathematical physics
This research paper uses a direct algebraic computational scheme to construct the Jacobi elliptic solutions based on the conformal fractional derivatives for nonlinear partial fractional differential equations (NPFDEs). Three vital models in mathematical physics [the space-time fractional coupled Hi...
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Online Access: | https://doi.org/10.1515/phys-2021-0020 |
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doaj-ddaa5011096945128998dc84c404c50f2021-10-03T07:42:42ZengDe GruyterOpen Physics2391-54712021-04-0119115216910.1515/phys-2021-0020Algebraic computational methods for solving three nonlinear vital models fractional in mathematical physicsGepreel Khaled A.0Mahdy Amr M. S.1Faculty of Science, Department of Mathematics, Taif University, P. O. Box 11099, Taif 21944, Saudi ArabiaFaculty of Science, Department of Mathematics, Taif University, P. O. Box 11099, Taif 21944, Saudi ArabiaThis research paper uses a direct algebraic computational scheme to construct the Jacobi elliptic solutions based on the conformal fractional derivatives for nonlinear partial fractional differential equations (NPFDEs). Three vital models in mathematical physics [the space-time fractional coupled Hirota Satsuma KdV equations, the space-time fractional symmetric regularized long wave (SRLW equation), and the space-time fractional coupled Sakharov–Kuznetsov (S–K) equations] are investigated through the direct algebraic method for more explanation of their novel characterizes. This approach is an easy and powerful way to find elliptical Jacobi solutions to NPFDEs. The hyperbolic function solutions and trigonometric functions where the modulus and, respectively, are degenerated by Jacobi elliptic solutions. In this style, we get many different kinds of traveling wave solutions such as rational wave traveling solutions, periodic, soliton solutions, and Jacobi elliptic solutions to nonlinear evolution equations in mathematical physics. With the suggested method, we were fit to find much explicit wave solutions of nonlinear integral differential equations next converting them into a differential equation. We do the 3D and 2D figures to define the kinds of outcome solutions. This style is moving, reliable, powerful, and easy for solving more difficult nonlinear physics mathematically.https://doi.org/10.1515/phys-2021-0020physical application of pfdesalgebraic methodoptical solutionlocal fractional derivativesjacobi elliptic functions |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Gepreel Khaled A. Mahdy Amr M. S. |
spellingShingle |
Gepreel Khaled A. Mahdy Amr M. S. Algebraic computational methods for solving three nonlinear vital models fractional in mathematical physics Open Physics physical application of pfdes algebraic method optical solution local fractional derivatives jacobi elliptic functions |
author_facet |
Gepreel Khaled A. Mahdy Amr M. S. |
author_sort |
Gepreel Khaled A. |
title |
Algebraic computational methods for solving three nonlinear vital models fractional in mathematical physics |
title_short |
Algebraic computational methods for solving three nonlinear vital models fractional in mathematical physics |
title_full |
Algebraic computational methods for solving three nonlinear vital models fractional in mathematical physics |
title_fullStr |
Algebraic computational methods for solving three nonlinear vital models fractional in mathematical physics |
title_full_unstemmed |
Algebraic computational methods for solving three nonlinear vital models fractional in mathematical physics |
title_sort |
algebraic computational methods for solving three nonlinear vital models fractional in mathematical physics |
publisher |
De Gruyter |
series |
Open Physics |
issn |
2391-5471 |
publishDate |
2021-04-01 |
description |
This research paper uses a direct algebraic computational scheme to construct the Jacobi elliptic solutions based on the conformal fractional derivatives for nonlinear partial fractional differential equations (NPFDEs). Three vital models in mathematical physics [the space-time fractional coupled Hirota Satsuma KdV equations, the space-time fractional symmetric regularized long wave (SRLW equation), and the space-time fractional coupled Sakharov–Kuznetsov (S–K) equations] are investigated through the direct algebraic method for more explanation of their novel characterizes. This approach is an easy and powerful way to find elliptical Jacobi solutions to NPFDEs. The hyperbolic function solutions and trigonometric functions where the modulus and, respectively, are degenerated by Jacobi elliptic solutions. In this style, we get many different kinds of traveling wave solutions such as rational wave traveling solutions, periodic, soliton solutions, and Jacobi elliptic solutions to nonlinear evolution equations in mathematical physics. With the suggested method, we were fit to find much explicit wave solutions of nonlinear integral differential equations next converting them into a differential equation. We do the 3D and 2D figures to define the kinds of outcome solutions. This style is moving, reliable, powerful, and easy for solving more difficult nonlinear physics mathematically. |
topic |
physical application of pfdes algebraic method optical solution local fractional derivatives jacobi elliptic functions |
url |
https://doi.org/10.1515/phys-2021-0020 |
work_keys_str_mv |
AT gepreelkhaleda algebraiccomputationalmethodsforsolvingthreenonlinearvitalmodelsfractionalinmathematicalphysics AT mahdyamrms algebraiccomputationalmethodsforsolvingthreenonlinearvitalmodelsfractionalinmathematicalphysics |
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