In this paper, using a model transformation approach a system of linear delay differential equations (DDEs) with multiple delays is converted to a non-delayed initial value problem. The variational iteration method (VIM) is then applied to obtain the approximate analytical solutions. Numerical results are given for several examples involving scalar and second order systems. Comparisons with the classical fourth-order Runge-Kutta method (RK4) verify that this method is very effective and convenient
There are various linear and nonlinear one-dimensional partial differential equations that are the f...
In this paper, a new analytical technique, namely the optimal perturbation iteration method, is pres...
It is obvious that differential equations can be used to model real-life problems. Although it is po...
AbstractThis paper employs the variational iteration method (VIM) to obtain analytical solutions of ...
In this research, a new approach is presented for solving delay differential equations (DDEs) which ...
AbstractIn this study, delay differential equations are investigated using the variational iteration...
In this study, delay differential equations are investigated using the variational iteration method....
This study investigated the applicability of coupling the variational iteration method (VIM) with Ta...
Variational iteration method is applied to solve a class of delay differential-algebraic equations. ...
This paper employs the variational iteration method to obtain analytical solutions of second-order ...
WOS: 000287468600004In this paper, we apply the variational iteration method using He's polynomials ...
AbstractThe variational iteration method (VIM) attracted much attention in the past few years as a p...
In this paper, solution of systems of delay differential equations, with initial conditions, using n...
The variational iteration method (VIM) is applied to solve singular perturbation initial value probl...
There are various linear and nonlinear one-dimensional partial differential equations that are the f...
There are various linear and nonlinear one-dimensional partial differential equations that are the f...
In this paper, a new analytical technique, namely the optimal perturbation iteration method, is pres...
It is obvious that differential equations can be used to model real-life problems. Although it is po...
AbstractThis paper employs the variational iteration method (VIM) to obtain analytical solutions of ...
In this research, a new approach is presented for solving delay differential equations (DDEs) which ...
AbstractIn this study, delay differential equations are investigated using the variational iteration...
In this study, delay differential equations are investigated using the variational iteration method....
This study investigated the applicability of coupling the variational iteration method (VIM) with Ta...
Variational iteration method is applied to solve a class of delay differential-algebraic equations. ...
This paper employs the variational iteration method to obtain analytical solutions of second-order ...
WOS: 000287468600004In this paper, we apply the variational iteration method using He's polynomials ...
AbstractThe variational iteration method (VIM) attracted much attention in the past few years as a p...
In this paper, solution of systems of delay differential equations, with initial conditions, using n...
The variational iteration method (VIM) is applied to solve singular perturbation initial value probl...
There are various linear and nonlinear one-dimensional partial differential equations that are the f...
There are various linear and nonlinear one-dimensional partial differential equations that are the f...
In this paper, a new analytical technique, namely the optimal perturbation iteration method, is pres...
It is obvious that differential equations can be used to model real-life problems. Although it is po...