In this article, some new nonlinear fractional partial differential equations (PDEs) (the space-time fractional order Boussinesq equation; the space-time (2 + 1)-dimensional breaking soliton equations; and the space-time fractional order SRLW equation) have been considered, in which the treatment of these equations in the diverse applications are described. Also, the fractional derivatives in the sense of β-derivative are defined. Some fractional PDEs will convert to consider ordinary differential equations (ODEs) with the help of transformation β-derivative. These equations are analyzed utilizing an integration scheme, namely, the rational exp−Ωη-expansion method. Different kinds of traveling wave solutions such as solitary, topological, d...
The space–time fractional nonlinear Schrödinger equation is studied based on the modified Riemann–Li...
WOS: 000425834700004In this study, the nonlinear fractional partial differential equations have been...
Abstract In this paper, the two variables (G′G,1G) $( \frac{G'}{G},\frac{1}{G} ) $-expansion method ...
In this paper, some new nonlinear fractional partial differential equations (PDEs) have been conside...
In this paper, some new nonlinear fractional partial differential equations (PDEs) have been conside...
Fractional order nonlinear evolution equations involving conformable fractional derivative are formu...
Three nonlinear fractional models, videlicet, the space-time fractional 1+1 Boussinesq equation, 2+1...
Three nonlinear fractional models, videlicet, the space-time fractional (1 + 1) Boussinesq equation,...
Three nonlinear fractional models, videlicet, the space-time fractional (1 + 1) Boussinesq equation,...
Three nonlinear fractional models, videlicet, the space-time fractional (1 + 1) Boussinesq equation,...
In this article, we investigate the exact traveling wave solutions of two nonlinear time fractional ...
In this article, the analytical solutions to the space-time fractional foam drainage equation and th...
In this work, we investigate exact solutions of some fractional-order differential equations arising...
In this work, we investigate exact solutions of some fractional-order differential equations arising...
The fractional Riccati expansion method is proposed to solve fractional differential equations. To i...
The space–time fractional nonlinear Schrödinger equation is studied based on the modified Riemann–Li...
WOS: 000425834700004In this study, the nonlinear fractional partial differential equations have been...
Abstract In this paper, the two variables (G′G,1G) $( \frac{G'}{G},\frac{1}{G} ) $-expansion method ...
In this paper, some new nonlinear fractional partial differential equations (PDEs) have been conside...
In this paper, some new nonlinear fractional partial differential equations (PDEs) have been conside...
Fractional order nonlinear evolution equations involving conformable fractional derivative are formu...
Three nonlinear fractional models, videlicet, the space-time fractional 1+1 Boussinesq equation, 2+1...
Three nonlinear fractional models, videlicet, the space-time fractional (1 + 1) Boussinesq equation,...
Three nonlinear fractional models, videlicet, the space-time fractional (1 + 1) Boussinesq equation,...
Three nonlinear fractional models, videlicet, the space-time fractional (1 + 1) Boussinesq equation,...
In this article, we investigate the exact traveling wave solutions of two nonlinear time fractional ...
In this article, the analytical solutions to the space-time fractional foam drainage equation and th...
In this work, we investigate exact solutions of some fractional-order differential equations arising...
In this work, we investigate exact solutions of some fractional-order differential equations arising...
The fractional Riccati expansion method is proposed to solve fractional differential equations. To i...
The space–time fractional nonlinear Schrödinger equation is studied based on the modified Riemann–Li...
WOS: 000425834700004In this study, the nonlinear fractional partial differential equations have been...
Abstract In this paper, the two variables (G′G,1G) $( \frac{G'}{G},\frac{1}{G} ) $-expansion method ...