This paper presents the results of applying a new iterative method to linear and nonlinear fractional partial differential equations in fluid mechanics. A numerical analysis was performed to find an exact solution of the fractional wave equation and fractional Burgers’ equation, as well as an approximate solution of fractional KdV equation and fractional Boussinesq equation. Fractional derivatives of the order α are described using Caputo's definition with 0 < α ≤ 1 or 1 < α ≤ 2. A comparative analysis of the results obtained using a new iterative method with those obtained by the Adomian decomposition method showed the first method to be more efficient and simple, providing accurate results in fewer computational operations. Given its flex...
This thesis uses B-Polynomial bases to solve both one-dimensional and multi-dimensional linear and n...
This thesis uses B-Polynomial bases to solve both one-dimensional and multi-dimensional linear and n...
In this paper, we apply an efficient method called the Aboodh decomposition method to solve systems ...
This paper presents the results of applying a new iterative method to linear and nonlinear fractiona...
The new iterative method with a powerful algorithm is developed for the solution of linear and nonli...
AbstractVariational iteration method has been used to handle linear and nonlinear differential equat...
AbstractIn this article, we implement relatively new analytical techniques, the variational iteratio...
AbstractVariational iteration method has been used to handle linear and nonlinear differential equat...
Fractional order partial differential equations, as generalization of classical integer order partia...
This paper introduces a new analytical technique (NAT) for solving a system of nonlinear fractional ...
WOS: 000299647400003In this paper, a new iterative method (NIM) is used to obtain the exact solution...
The Reconstruction of Variational Iteration Method (RVIM) technique has been successfully applied to...
This book discusses various novel analytical and numerical methods for solving partial and fractiona...
A modification of the variational iteration method (VIM) for solving systems of nonlinear fractional...
Purpose - This paper aims to present a general framework of the homotopy perturbation method (HPM) f...
This thesis uses B-Polynomial bases to solve both one-dimensional and multi-dimensional linear and n...
This thesis uses B-Polynomial bases to solve both one-dimensional and multi-dimensional linear and n...
In this paper, we apply an efficient method called the Aboodh decomposition method to solve systems ...
This paper presents the results of applying a new iterative method to linear and nonlinear fractiona...
The new iterative method with a powerful algorithm is developed for the solution of linear and nonli...
AbstractVariational iteration method has been used to handle linear and nonlinear differential equat...
AbstractIn this article, we implement relatively new analytical techniques, the variational iteratio...
AbstractVariational iteration method has been used to handle linear and nonlinear differential equat...
Fractional order partial differential equations, as generalization of classical integer order partia...
This paper introduces a new analytical technique (NAT) for solving a system of nonlinear fractional ...
WOS: 000299647400003In this paper, a new iterative method (NIM) is used to obtain the exact solution...
The Reconstruction of Variational Iteration Method (RVIM) technique has been successfully applied to...
This book discusses various novel analytical and numerical methods for solving partial and fractiona...
A modification of the variational iteration method (VIM) for solving systems of nonlinear fractional...
Purpose - This paper aims to present a general framework of the homotopy perturbation method (HPM) f...
This thesis uses B-Polynomial bases to solve both one-dimensional and multi-dimensional linear and n...
This thesis uses B-Polynomial bases to solve both one-dimensional and multi-dimensional linear and n...
In this paper, we apply an efficient method called the Aboodh decomposition method to solve systems ...