AbstractIn this article, we study numerical solutions of time-fractional fourth-order partial differential equations with variable coefficients by introducing the fractional derivative in the sense of Caputo. We implement reliable series solution techniques namely Adomian decomposition method (ADM) and He’s variational iteration method (HVIM). Some applications are presented to highlight the significant features of these techniques. The comparison shows that the solutions obtained are in good agreement with each other and with their respective exact solutions. Some of these types of differential equations arise practically in the theory of transverse vibrations
AbstractIn this article, we implement relatively new analytical techniques, the variational iteratio...
AbstractIn this article, we study an approximate analytical solution of linear and nonlinear time-fr...
We introduce a new numerical method, based on Bernoulli polynomials, for solving multiterm variable-...
AbstractIn this article, we study numerical solutions of time-fractional fourth-order partial differ...
AbstractIn this article, linear and nonlinear boundary value problems for fourth-order fractional in...
AbstractIn this work, the fractional KdV–Burgers–Kuramoto equation is studied. He’s variational iter...
The goal of this research is to develop a novel analytic technique for obtaining the approximate and...
In this paper, an analytic solution which has to do with the series expansion approach is proposed t...
AbstractVariational iteration method has been used to handle linear and nonlinear differential equat...
AbstractThis paper outlines a reliable strategy to use the homotopy perturbation method based on Jum...
AbstractThe aim of this paper is to present an efficient and reliable treatment of the variational i...
In this study, the fractional reduced differential transform method (FRDTM) is employed to solve thr...
The purpose of this paper is to develop a numerical scheme for the two-dimensional fourth-order frac...
In this paper we consider the variable order time fractional diffusion equation. We adopt the Coimbr...
AbstractIn this paper, a novel analytical method is proposed for differential equations with time-fr...
AbstractIn this article, we implement relatively new analytical techniques, the variational iteratio...
AbstractIn this article, we study an approximate analytical solution of linear and nonlinear time-fr...
We introduce a new numerical method, based on Bernoulli polynomials, for solving multiterm variable-...
AbstractIn this article, we study numerical solutions of time-fractional fourth-order partial differ...
AbstractIn this article, linear and nonlinear boundary value problems for fourth-order fractional in...
AbstractIn this work, the fractional KdV–Burgers–Kuramoto equation is studied. He’s variational iter...
The goal of this research is to develop a novel analytic technique for obtaining the approximate and...
In this paper, an analytic solution which has to do with the series expansion approach is proposed t...
AbstractVariational iteration method has been used to handle linear and nonlinear differential equat...
AbstractThis paper outlines a reliable strategy to use the homotopy perturbation method based on Jum...
AbstractThe aim of this paper is to present an efficient and reliable treatment of the variational i...
In this study, the fractional reduced differential transform method (FRDTM) is employed to solve thr...
The purpose of this paper is to develop a numerical scheme for the two-dimensional fourth-order frac...
In this paper we consider the variable order time fractional diffusion equation. We adopt the Coimbr...
AbstractIn this paper, a novel analytical method is proposed for differential equations with time-fr...
AbstractIn this article, we implement relatively new analytical techniques, the variational iteratio...
AbstractIn this article, we study an approximate analytical solution of linear and nonlinear time-fr...
We introduce a new numerical method, based on Bernoulli polynomials, for solving multiterm variable-...