We present a new method based on unification of fictitious time integration (FTI) and group preserving (GP) methods. The GP method is applied in numerically discretized ordinary differential equations obtained from application of FTI method to a given partial differential equation (PDE). The algorithm is applied to hyperbolic telegraph equation and utilizes the Cayley transformation and the Pade approximations in the Minkowski space. It avoids unauthentic solutions and ghost fixed points which is one of the advantages of the present method over other related numerical methods in the literature. The technique is tested on three specific examples for various parameter values appearing in the telegraph equation and discretization steps. Such s...
Adomian decomposition method has been applied to solve many functional equations so far. In this art...
In this paper, a new approach “modified extended cubic B-Spline differential quadrature (mECDQ) meth...
In this paper, the telegraph equation is solved numerically by cubic B-spline quasi-interpolation .W...
In this paper, we present a preliminary study of the formulation of two new explicit group relaxatio...
This article presents a new numerical scheme to approximate the solution of one-dimensional telegrap...
In this article, an analytical solution procedure is described for solving two and three dimensional...
AbstractIn this article, an analytical solution procedure is described for solving two and three dim...
WOS: 000299511900002In this research, two analytical methods, namely homotopy perturbation method an...
Abstract. In this research, two analytical methods, namely homotopy per-turbation method and variati...
In this research, the Differential Transformation Method (DTM) has been utilized to solve the hyperb...
In this study, a mathematical model has been developed for the second order hyperbolic one-dimension...
In this paper, a new method modified exponential cubic B-Spline differential quadrature method (mExp...
AbstractThe 2D generalized differential quadrature method (hereafter called ((1+1)-GDQ) is introduce...
This paper presents a new approach and methodology to solve the second-order one-dimensional hyperbo...
AbstractIn this paper, a new approach “modified extended cubic B-Spline differential quadrature (mEC...
Adomian decomposition method has been applied to solve many functional equations so far. In this art...
In this paper, a new approach “modified extended cubic B-Spline differential quadrature (mECDQ) meth...
In this paper, the telegraph equation is solved numerically by cubic B-spline quasi-interpolation .W...
In this paper, we present a preliminary study of the formulation of two new explicit group relaxatio...
This article presents a new numerical scheme to approximate the solution of one-dimensional telegrap...
In this article, an analytical solution procedure is described for solving two and three dimensional...
AbstractIn this article, an analytical solution procedure is described for solving two and three dim...
WOS: 000299511900002In this research, two analytical methods, namely homotopy perturbation method an...
Abstract. In this research, two analytical methods, namely homotopy per-turbation method and variati...
In this research, the Differential Transformation Method (DTM) has been utilized to solve the hyperb...
In this study, a mathematical model has been developed for the second order hyperbolic one-dimension...
In this paper, a new method modified exponential cubic B-Spline differential quadrature method (mExp...
AbstractThe 2D generalized differential quadrature method (hereafter called ((1+1)-GDQ) is introduce...
This paper presents a new approach and methodology to solve the second-order one-dimensional hyperbo...
AbstractIn this paper, a new approach “modified extended cubic B-Spline differential quadrature (mEC...
Adomian decomposition method has been applied to solve many functional equations so far. In this art...
In this paper, a new approach “modified extended cubic B-Spline differential quadrature (mECDQ) meth...
In this paper, the telegraph equation is solved numerically by cubic B-spline quasi-interpolation .W...