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Study on abundant explicit wave solutions of the thin‑film Ferro‑electric materials equation
Faculty
Science
Year:
2021
Type of Publication:
ZU Hosted
Pages:
Authors:
Maha Shehata Mohamed Shehata
Staff Zu Site
Abstract In Staff Site
Journal:
Optical and Quantum Electronics Springer
Volume:
Keywords :
Study , abundant explicit wave solutions , , thin‑film Ferro‑electric
Abstract:
From point of view of two distinct various techniques accurate solutions for the thin-film ferroelectric materials equation which plays vital role in optics are implemented which represent haw utilized waves propagate through ferroelectric materials. The first one is the modified simple equation method which surrender to the balance rule and gives closed form analytical solution for all applicable problems while the second has personal profile named theas Riccati-Bernoulli Sub-ODE method which not surrender to the balance rule and has special effective properties in calculations. These methods can be used perfectly to achieve the exact solutions for different types of nonlinear problems arising in various branches of science. Via giving the appearing variables definite values, 2D and 3D- impressive graphs of some achieved solutions are drawled.
Author Related Publications
Maha Shehata Mohamed Shehata, "Comparison between the new exact and numerical solutions of the Mikhailov–Novikov–Wang equation", Wiley, 2021
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Maha Shehata Mohamed Shehata, "Optical solitons to a perturbed Gerdjikov-Ivanov equation using two different techniques", Gravitation, Mathematical Physics and Field Theory Revista Mexicana de F´ısica, 2021
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Maha Shehata Mohamed Shehata, "Exact propagation of the isolated waves model described by the three coupled nonlinear Maccari's system with complex structure", © World Scientic Publishing Company, 2021
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Maha Shehata Mohamed Shehata, "Study on abundant explicit wave solutions of the thin‑film Ferro‑electric materials equation", Springer, 2021
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Maha Shehata Mohamed Shehata, "Study on abundant explicit wave solutions of the thin‑film Ferro‑electric materials equation", Springer, 2021
More
Department Related Publications
Doaa Shoukry Mohamed Abdulmutallab , "Approximate Solution of Class of Nonlinear Fractional Integro-Differential Equations Using Bernstein Polynomial and Shifted Legendre Polynomials Methods", Copyright © 2015 American Scientific Publishers All rights reserved Printed in the United States of America, 2015
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Metwally AlAwadi Elsayed AlAwadi, "Limit theorems for random maximum of independent and non-identically distributed random vectors", Statistics, 2013
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