In the present paper, new analytical solutions for the fractional Vakhnenko-Parkes (VP) equation in the sense of the conformable derivative are obtained using the exp(-phi(xi)) expansion method. The obtained traveling wave solutions are expressed by the hyperbolic, trigonometric, exponential and rational functions. Simulation of the obtained solutions are given at the end of the paper
In the present paper, expansion method is applied to the space-time fractional third order Korteweg-...
In this paper, we obtain several novelty solutions by applying the improved F-expansion method to so...
In the present paper, new analytical solutions for the conformable space-time fractional Sharma-Tass...
In the present paper, new analytical solutions for the fractional Vakhnenko-Parkes (VP) equation in ...
In the present paper, new analytical solutions for the fractional Vakhnenko–Parkes (VP) equation in ...
Modelling of physical systems mathematically, produces nonlinear evolution equations. Most of the ph...
In the present paper, the exp(−ϕ(ξ)) expansion method is applied to the fractional Broer–Kaup and ap...
The nonlinear fractional model, videlicet, the space-time fractional (2+1)-dimensional fractional Bo...
In the present study, we deal with the space–time fractional KdV–MKdV equation and the space–time fr...
The nonlinear fractional differential equations (FDEs) are produced by mathematical modelling of som...
Fractional order nonlinear evolution equations involving conformable fractional derivative are formu...
In this article, some new nonlinear fractional partial differential equations (PDEs) (the space-time...
Abstract: In this research, a structure of the Bernoulli sub-equation function method is proposed. T...
Fractional order nonlinear evolution equations play important roles to give a depiction of the compl...
Due to varied and important applications of nonlinear fractional differential equations in real worl...
In the present paper, expansion method is applied to the space-time fractional third order Korteweg-...
In this paper, we obtain several novelty solutions by applying the improved F-expansion method to so...
In the present paper, new analytical solutions for the conformable space-time fractional Sharma-Tass...
In the present paper, new analytical solutions for the fractional Vakhnenko-Parkes (VP) equation in ...
In the present paper, new analytical solutions for the fractional Vakhnenko–Parkes (VP) equation in ...
Modelling of physical systems mathematically, produces nonlinear evolution equations. Most of the ph...
In the present paper, the exp(−ϕ(ξ)) expansion method is applied to the fractional Broer–Kaup and ap...
The nonlinear fractional model, videlicet, the space-time fractional (2+1)-dimensional fractional Bo...
In the present study, we deal with the space–time fractional KdV–MKdV equation and the space–time fr...
The nonlinear fractional differential equations (FDEs) are produced by mathematical modelling of som...
Fractional order nonlinear evolution equations involving conformable fractional derivative are formu...
In this article, some new nonlinear fractional partial differential equations (PDEs) (the space-time...
Abstract: In this research, a structure of the Bernoulli sub-equation function method is proposed. T...
Fractional order nonlinear evolution equations play important roles to give a depiction of the compl...
Due to varied and important applications of nonlinear fractional differential equations in real worl...
In the present paper, expansion method is applied to the space-time fractional third order Korteweg-...
In this paper, we obtain several novelty solutions by applying the improved F-expansion method to so...
In the present paper, new analytical solutions for the conformable space-time fractional Sharma-Tass...