In this paper, we present a numerical algorithm based on new homotopy perturbation transform method (HPTM) to solve a time-fractional nonlinear shock wave equation which describes the flow of gases. The fractional derivative is considered in the Caputo sense. The HPTM is combined form of Laplace transform, homotopy perturbation method and He’s polynomials. The nonlinear terms can be easily handled by the use of He’s polynomials. The technique finds the solution without any discretization or restrictive assumptions and avoids the round-off errors. The obtained results are in good agreement with the existing ones in open literature and it is shown that the technique introduced here is robust, efficient, easy to implement and computationally v...
WOS: 000288056400013In this study, we used the homotopy perturbation method (HPM) for solving fracti...
This Letter applies the modified He's homotopy perturbation method (HPM) suggested by Momani and Odi...
In this paper, an approximate analytical solution of the time fractional gas dynamics equation arisi...
AbstractThe main aim of the present paper was to present a user friendly approach based on homotopy ...
The main aim of the present paper was to present a user friendly approach based on homotopy analysis...
The symmetry design of the system contains integer partial differential equations and fractional-ord...
In this study, the homotopy perturbation transform method (HPTM) is performed to give approximate an...
Using the recently proposed homotopy perturbation Shehu transform method (HPSTM), we successfully co...
In this paper, we present a reliable algorithm based on the new homotopy perturbation transform meth...
AbstractIn this paper, we present a reliable algorithm based on the new homotopy perturbation transf...
The idea proposed in this work is to extend the ZZ transform method to resolve the nonlinear fractio...
This article presents a homotopy perturbation transform method and a variational iterative transform...
In this article, we discuss the analytic solution of the fully developed shock waves. The homotopy p...
The key objective of this paper is to study the fractional model of Fitzhugh-Nagumo equation (FNE) w...
In this work, we aim to present a hybrid numerical scheme based on the homotopy analysis transform m...
WOS: 000288056400013In this study, we used the homotopy perturbation method (HPM) for solving fracti...
This Letter applies the modified He's homotopy perturbation method (HPM) suggested by Momani and Odi...
In this paper, an approximate analytical solution of the time fractional gas dynamics equation arisi...
AbstractThe main aim of the present paper was to present a user friendly approach based on homotopy ...
The main aim of the present paper was to present a user friendly approach based on homotopy analysis...
The symmetry design of the system contains integer partial differential equations and fractional-ord...
In this study, the homotopy perturbation transform method (HPTM) is performed to give approximate an...
Using the recently proposed homotopy perturbation Shehu transform method (HPSTM), we successfully co...
In this paper, we present a reliable algorithm based on the new homotopy perturbation transform meth...
AbstractIn this paper, we present a reliable algorithm based on the new homotopy perturbation transf...
The idea proposed in this work is to extend the ZZ transform method to resolve the nonlinear fractio...
This article presents a homotopy perturbation transform method and a variational iterative transform...
In this article, we discuss the analytic solution of the fully developed shock waves. The homotopy p...
The key objective of this paper is to study the fractional model of Fitzhugh-Nagumo equation (FNE) w...
In this work, we aim to present a hybrid numerical scheme based on the homotopy analysis transform m...
WOS: 000288056400013In this study, we used the homotopy perturbation method (HPM) for solving fracti...
This Letter applies the modified He's homotopy perturbation method (HPM) suggested by Momani and Odi...
In this paper, an approximate analytical solution of the time fractional gas dynamics equation arisi...