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Maha Shehata
Maha Shehata

Public Documents 2
Accurate perceptions of the bright and dark soliton solutions to the modified nonline...
Maha Shehata
Ahmet Bekir

Maha Shehata

and 1 more

January 30, 2024
In this study, we will implement new perceptions for the bright and dark soliton solutions to the modified nonlinear Schrödinger equation (MNLSE)or forms of the rogue wave modes for a derivative nonlinear Schrodinger model with positive linear dispersion which describe the propagation of rogue waves in Ocean engineering as well as all similar waves such as dynamics waveguides that have unexpected large displacements, the waves which occur only in the regime of positive cubic nonlinearity, regime that coincides exactly with the existence of instabilities of plane waves , long-wave limit of a breather (a pulsing mode). Two famous different schemas are involved for this purpose. The first schema is the solitary wave ansatze method (SWAM), while the second scheme is the extended simple equation method (ESEM). The two schemas are implemented in the same vein and parallel to construct new perceptions to the soliton solutions of this model. A comparison between the obtained new perceptions with the old perceptions that achieved previously by other authors has been demonstrated.
New Lump Solutions for Spatio-Temporal Dispersion (1+1)-Dimensional Ito-Equation
Maha Shehata
Emad Zahran

Maha Shehata

and 2 more

April 03, 2021
From point of view of two different schemas several new impressive lump solutions to (1+1)-dimensional Ito equation have been established. The first schema is the Paul-Painleve approach method (PPAM) which will be applied perfectly to extract multiple lump solutions of this model, while the second schema is the famous one of the ansatze method and has personal profile named the Ricatti-Bernolli Sub-ODE method. In related subject the numerical solutions corresponding to all lump solutions achieved via each method have been demonstrated individually in the framework of the variational iteration method (VIM).

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