AbstractIn this article, the exp(−Φ(ξ))-expansion method has been successfully implemented to seek traveling wave solutions of the coupled Higgs field equation and the Maccari system. The result reveals that the method together with the first order ordinary differential equation is a very influential and effective tool for solving coupled nonlinear partial differential equations in mathematical physics and engineering. The obtained solutions have been articulated by the hyperbolic functions, trigonometric functions and rational functions with arbitrary constants. Numerical results together with the graphical representation explicitly reveal the high efficiency and reliability of the proposed algorithm
In this article, the exp(-Φ(ξ))exp(-Φ(ξ))-expansion method is modified for (3+1)-dimensional space–t...
In this paper, we construct the traveling wave solutions involving parameters of the combined Kdv-MK...
In this paper, we employ the exp(−ϕ(ξ))-expansion method to find the exact traveling wave solutions ...
AbstractIn this article, the exp(−Φ(ξ))-expansion method has been successfully implemented to seek t...
In this paper, the modified simplest equation method is successfully implemented to find travelling ...
AbstractIn this paper, we establish exact solutions for complex nonlinear equations. The He’s semi-i...
AbstractIn this article, the novel (G′/G)-expansion method is used to construct exact travelling wav...
In this research we apply generalized Exp-Function method to obtain exact, solitary and new soliton ...
AbstractIn this paper, we establish exact solutions for complex nonlinear equations. The He’s semi-i...
This paper deals with constructing more general exact solutions of the coupled Higgs equation by usi...
In this research, we find the exact traveling wave solutions involving parameters of the generalized...
AbstractIn this present study using the new analytical method to the coupled nonlinear Maccari’s sys...
The inspection of wave motion and propagation of diffusion, convection, dispersion, and dissipation ...
AbstractIn this article, the novel (G′/G)-expansion method is used to construct exact travelling wav...
AbstractIn this article, the exp(-Φ(ξ))-expansion method is modified for (3+1)-dimensional space–tim...
In this article, the exp(-Φ(ξ))exp(-Φ(ξ))-expansion method is modified for (3+1)-dimensional space–t...
In this paper, we construct the traveling wave solutions involving parameters of the combined Kdv-MK...
In this paper, we employ the exp(−ϕ(ξ))-expansion method to find the exact traveling wave solutions ...
AbstractIn this article, the exp(−Φ(ξ))-expansion method has been successfully implemented to seek t...
In this paper, the modified simplest equation method is successfully implemented to find travelling ...
AbstractIn this paper, we establish exact solutions for complex nonlinear equations. The He’s semi-i...
AbstractIn this article, the novel (G′/G)-expansion method is used to construct exact travelling wav...
In this research we apply generalized Exp-Function method to obtain exact, solitary and new soliton ...
AbstractIn this paper, we establish exact solutions for complex nonlinear equations. The He’s semi-i...
This paper deals with constructing more general exact solutions of the coupled Higgs equation by usi...
In this research, we find the exact traveling wave solutions involving parameters of the generalized...
AbstractIn this present study using the new analytical method to the coupled nonlinear Maccari’s sys...
The inspection of wave motion and propagation of diffusion, convection, dispersion, and dissipation ...
AbstractIn this article, the novel (G′/G)-expansion method is used to construct exact travelling wav...
AbstractIn this article, the exp(-Φ(ξ))-expansion method is modified for (3+1)-dimensional space–tim...
In this article, the exp(-Φ(ξ))exp(-Φ(ξ))-expansion method is modified for (3+1)-dimensional space–t...
In this paper, we construct the traveling wave solutions involving parameters of the combined Kdv-MK...
In this paper, we employ the exp(−ϕ(ξ))-expansion method to find the exact traveling wave solutions ...