This work aims at a new semi-analytical method called the variational iteration transformation method for solving nonlinear homogeneous and nonhomogeneous fractional-order gas dynamics equations. The Shehu transformation and the iterative technique are applied to solve the suggested problems. The proposed method has an advantage over existing approaches because it does not require additional materials or computations. Four problems are used to test the authenticity of the proposed method. Using the suggested method, the solution proves to be more accurate. The proposed method can be implemented to solve many nonlinear fractional order problems because it has a straightforward implementation
Copyright © 2015 Mohamed S. Al-luhaibi. This is an open access article distributed under the Creativ...
The symmetry design of the system contains integer partial differential equations and fractional-ord...
The paper aims to obtain exact analytical solution of nonlinear nonhomogeneous space-time fractional...
This article introduces two well-known computational techniques for solving the time-fractional syst...
In this paper, we apply a new technique, namely local fractional variational iteration transform met...
This article presents a homotopy perturbation transform method and a variational iterative transform...
In this paper, an approximate analytical solution of the time fractional gas dynamics equation arisi...
Using the recently proposed homotopy perturbation Shehu transform method (HPSTM), we successfully co...
In this study, the homotopy perturbation transform method (HPTM) is performed to give approximate an...
Generally, the differential equations of integer order do not properly model various phenomena in di...
The aim of this paper is a new semianalytical technique called the variational iteration transform m...
In this study, we deal with the problem of constructing semianalytical solution of mathematical prob...
A modification of the variational iteration method (VIM) for solving systems of nonlinear fractional...
AbstractIn this article, we implement relatively new analytical techniques, the variational iteratio...
In this work, we combined two techniques, the variational iteration technique and the Laplace transf...
Copyright © 2015 Mohamed S. Al-luhaibi. This is an open access article distributed under the Creativ...
The symmetry design of the system contains integer partial differential equations and fractional-ord...
The paper aims to obtain exact analytical solution of nonlinear nonhomogeneous space-time fractional...
This article introduces two well-known computational techniques for solving the time-fractional syst...
In this paper, we apply a new technique, namely local fractional variational iteration transform met...
This article presents a homotopy perturbation transform method and a variational iterative transform...
In this paper, an approximate analytical solution of the time fractional gas dynamics equation arisi...
Using the recently proposed homotopy perturbation Shehu transform method (HPSTM), we successfully co...
In this study, the homotopy perturbation transform method (HPTM) is performed to give approximate an...
Generally, the differential equations of integer order do not properly model various phenomena in di...
The aim of this paper is a new semianalytical technique called the variational iteration transform m...
In this study, we deal with the problem of constructing semianalytical solution of mathematical prob...
A modification of the variational iteration method (VIM) for solving systems of nonlinear fractional...
AbstractIn this article, we implement relatively new analytical techniques, the variational iteratio...
In this work, we combined two techniques, the variational iteration technique and the Laplace transf...
Copyright © 2015 Mohamed S. Al-luhaibi. This is an open access article distributed under the Creativ...
The symmetry design of the system contains integer partial differential equations and fractional-ord...
The paper aims to obtain exact analytical solution of nonlinear nonhomogeneous space-time fractional...