[HTML][HTML] Numerical approach to differential equations of fractional order
In this paper, the variational iteration method and the Adomian decomposition method are
implemented to give approximate solutions for linear and nonlinear systems of differential
equations of fractional order. The two methods in applied mathematics can be used as
alternative methods for obtaining analytic and approximate solutions for different types of
differential equations. In these schemes, the solution takes the form of a convergent series
with easily computable components. This paper presents a numerical comparison between …
implemented to give approximate solutions for linear and nonlinear systems of differential
equations of fractional order. The two methods in applied mathematics can be used as
alternative methods for obtaining analytic and approximate solutions for different types of
differential equations. In these schemes, the solution takes the form of a convergent series
with easily computable components. This paper presents a numerical comparison between …
In this paper, the variational iteration method and the Adomian decomposition method are implemented to give approximate solutions for linear and nonlinear systems of differential equations of fractional order. The two methods in applied mathematics can be used as alternative methods for obtaining analytic and approximate solutions for different types of differential equations. In these schemes, the solution takes the form of a convergent series with easily computable components. This paper presents a numerical comparison between the two methods for solving systems of fractional differential equations. Numerical results show that the two approaches are easy to implement and accurate when applied to differential equations of fractional order.
Elsevier
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