Numerical Solutions with Linearization Techniques of the Fractional Harry Dym Equation
Author:
Affiliation:
1. Department of Actuary, Firat University , 2300 , Elazig , Turkey
2. Department of Mathematics, Harran University , Sanliurfa , Turkey
Abstract
Publisher
Walter de Gruyter GmbH
Subject
Applied Mathematics,Engineering (miscellaneous),Modeling and Simulation,General Computer Science
Link
https://www.sciendo.com/pdf/10.2478/AMNS.2019.1.00004
Reference19 articles.
1. Al-Khaled, K. and Alquran, M. (2014). An approximate solution for a fractional model of generalized Harry Dym equation. Mathematical Sciences, 8(4), 125-130.
2. Biswas, A., Mirzazadeh, M., Eslami, M., Milovic, D., & Belic, M. (2014). Solitons in optical metamaterials by functional variable method and first integral approach. Frequenz, 68(11-12), 525-530.
3. Baskonus, H., Mekkaoui, T., Hammouch, Z., and Bulut, H. (2015). Active control of a chaotic fractional order economic system. Entropy, 17(8), 5771-5783.
4. Das, S. (2011). Functional fractional calculus. Springer Science & Business Media.
5. Esen, A., Ucar, Y., Yagmurlu, N. and Tasbozan, O. (2013). A Galerkin finite element method to solve fractional diffusion and fractional diffusion-wave equations. Mathematical Modelling and Analysis, 18(2), 260-273.
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