In this paper, the approximated analytical solution for the fractional Swift–Hohenberg (S–H) equation has been investigated with the help of the residual power series method (RPSM). To ensure the applicability and efficiency of the proposed technique, we consider a non-linear fractional order Swift–Hohenberg equation in the presence and absence of dispersive terms. The effect of bifurcation and dispersive parameters with physical importance on the probability density function for distinct fractional Brownian and standard motions are studied and presented through plots. The results obtained show that the proposed technique is simple to implement and very effective for analyzing the complex problems that arise in connected a...
AbstractIn this paper, a comparison for the solutions of nonlinear Swift–Hohenberg equation with tim...
AbstractIn this paper, the most effective methods, the homotopy perturbation method (HPM) and the di...
The approximate analytical solution of the fractional Cahn-Hilliard and Gardner equations has been a...
Many phenomena in physics and engineering can be built by linear and nonlinear fractional partial di...
In this paper, we find approximate analytical solutions to fractional order “Swift-Hohenberg equatio...
This paper is aimed at constructing fractional power series (FPS) solutions of fractional Burgers–Hu...
In this article, analytical exact and approximate solutions for fractional physical equations are ob...
The SIR model with unknown parameters is an important issue for scientists in the study of epidemiol...
In this article, the residual power series method for solving nonlinear time fractional reaction-dif...
In this study, a generalized Taylor series formula together with residual error function, which is n...
In this article, an attractive numeric–analytic algorithm, called the fractional residual power seri...
In this paper, a comparison for the solutions of nonlinear Swift–Hohenberg equation with time-space ...
Abstract A powerful analytical approach, namely the fractional residual power series method (FRPS), ...
We present an analytic algorithm to solve the generalized Berger-Fisher (B-F) equation, B-F equation...
This paper find the most effective method to solve the time-fractional Swift-Hohenberg equation w...
AbstractIn this paper, a comparison for the solutions of nonlinear Swift–Hohenberg equation with tim...
AbstractIn this paper, the most effective methods, the homotopy perturbation method (HPM) and the di...
The approximate analytical solution of the fractional Cahn-Hilliard and Gardner equations has been a...
Many phenomena in physics and engineering can be built by linear and nonlinear fractional partial di...
In this paper, we find approximate analytical solutions to fractional order “Swift-Hohenberg equatio...
This paper is aimed at constructing fractional power series (FPS) solutions of fractional Burgers–Hu...
In this article, analytical exact and approximate solutions for fractional physical equations are ob...
The SIR model with unknown parameters is an important issue for scientists in the study of epidemiol...
In this article, the residual power series method for solving nonlinear time fractional reaction-dif...
In this study, a generalized Taylor series formula together with residual error function, which is n...
In this article, an attractive numeric–analytic algorithm, called the fractional residual power seri...
In this paper, a comparison for the solutions of nonlinear Swift–Hohenberg equation with time-space ...
Abstract A powerful analytical approach, namely the fractional residual power series method (FRPS), ...
We present an analytic algorithm to solve the generalized Berger-Fisher (B-F) equation, B-F equation...
This paper find the most effective method to solve the time-fractional Swift-Hohenberg equation w...
AbstractIn this paper, a comparison for the solutions of nonlinear Swift–Hohenberg equation with tim...
AbstractIn this paper, the most effective methods, the homotopy perturbation method (HPM) and the di...
The approximate analytical solution of the fractional Cahn-Hilliard and Gardner equations has been a...