In this study, a new modified group iterative scheme for solving the two-dimensional (2D) fractional hyperbolic telegraph differential equation with Dirichlet boundary conditions is obtained from the 2h-spaced standard and rotated Crank–Nicolson FD approximations. The findings of new four-point modified explicit group relaxation method demonstrates the rapid rate of convergence of proposed method as compared to the existing schemes. Numerical tests are performed to test the capability of the group iterative scheme in comparison with the point iterative scheme counterparts. The stability of the derived modified group method is proven by the matrix norm algorithm. The obtained results are tabulated and concluded that exact solutions are exact...
In this paper, we consider a fractional model of telegraph equation in terms of voltage and current....
In this study, homotopy perturbation method (HPM) is used to obtain analytic and approximate solutio...
The present attempt is to design a novel approach for the numerical solution of fractional telegraph...
In this paper, we present a preliminary study of the formulation of two new explicit group relaxatio...
Numerical schemes based on small fixed-size grouping strategies have been successfully researched ov...
In the present research paper, an iterative approach named the iterative Shehu transform method is i...
In this study, a mathematical model has been developed for the second order hyperbolic one-dimension...
Fractional differential equations play a significant role in science and technology given that sever...
AbstractIn this article, an analytical solution based on the series expansion method is proposed to ...
Abstract We discuss the numerical solution of the time-fractional telegraph equation. The main purpo...
We present a new method based on unification of fictitious time integration (FTI) and group preservi...
In this paper, a class of unconditionally stable difference schemes based on the Pad´e approximation...
In this paper, a class of unconditionally stable difference schemes based on the Pad´e approximation...
In this paper, a method of separating variables is effectively implemented for solving a time-fracti...
In this paper, a method of separating variables is effectively implemented for solving a time-fracti...
In this paper, we consider a fractional model of telegraph equation in terms of voltage and current....
In this study, homotopy perturbation method (HPM) is used to obtain analytic and approximate solutio...
The present attempt is to design a novel approach for the numerical solution of fractional telegraph...
In this paper, we present a preliminary study of the formulation of two new explicit group relaxatio...
Numerical schemes based on small fixed-size grouping strategies have been successfully researched ov...
In the present research paper, an iterative approach named the iterative Shehu transform method is i...
In this study, a mathematical model has been developed for the second order hyperbolic one-dimension...
Fractional differential equations play a significant role in science and technology given that sever...
AbstractIn this article, an analytical solution based on the series expansion method is proposed to ...
Abstract We discuss the numerical solution of the time-fractional telegraph equation. The main purpo...
We present a new method based on unification of fictitious time integration (FTI) and group preservi...
In this paper, a class of unconditionally stable difference schemes based on the Pad´e approximation...
In this paper, a class of unconditionally stable difference schemes based on the Pad´e approximation...
In this paper, a method of separating variables is effectively implemented for solving a time-fracti...
In this paper, a method of separating variables is effectively implemented for solving a time-fracti...
In this paper, we consider a fractional model of telegraph equation in terms of voltage and current....
In this study, homotopy perturbation method (HPM) is used to obtain analytic and approximate solutio...
The present attempt is to design a novel approach for the numerical solution of fractional telegraph...