AbstractThis paper presents approximate analytical solutions for systems of fractional differential equations using the differential transform method. The fractional derivatives are described in the Caputo sense. The application of differential transform method, developed for differential equations of integer order, is extended to derive approximate analytical solutions of systems of fractional differential equations. The solutions of our model equations are calculated in the form of convergent series with easily computable components. Some examples are solved as illustrations, using symbolic computation. The numerical results show that the approach is easy to implement and accurate when applied to systems of fractional differential equatio...
Abstract: In this paper, we illustrate application of the reduced differential transform method (RDT...
An operator-based approach for the construction of closed-form solutions to fractional differential ...
summary:We use the Laplace transform method to solve certain families of fractional order differenti...
AbstractThis paper presents approximate analytical solutions for systems of fractional differential ...
AbstractFractional calculus has been used to model physical and engineering processes that are found...
AbstractIn this paper, the fractional differential transform method is developed to solve fractional...
We present some new results that deal with the fractional decomposition method (FDM). This method is...
AbstractIn this paper, we present an efficient algorithm for solving a fractional oscillator using t...
AbstractIn this study, a decomposition method for approximating the solution of systems of fractiona...
AbstractNonlinear differential equations with fractional derivatives give general representations of...
This paper presents approximate solutions of linear system of fractional differential equations (FDE...
AbstractIn this paper, we consider Caputo type fractional differential equations of order 0<α<1 with...
Fractional derivatives are powerful tools in solving the problems of science and engineering. In thi...
AbstractFractional calculus has been used to model physical and engineering processes that are found...
summary:We use the Laplace transform method to solve certain families of fractional order differenti...
Abstract: In this paper, we illustrate application of the reduced differential transform method (RDT...
An operator-based approach for the construction of closed-form solutions to fractional differential ...
summary:We use the Laplace transform method to solve certain families of fractional order differenti...
AbstractThis paper presents approximate analytical solutions for systems of fractional differential ...
AbstractFractional calculus has been used to model physical and engineering processes that are found...
AbstractIn this paper, the fractional differential transform method is developed to solve fractional...
We present some new results that deal with the fractional decomposition method (FDM). This method is...
AbstractIn this paper, we present an efficient algorithm for solving a fractional oscillator using t...
AbstractIn this study, a decomposition method for approximating the solution of systems of fractiona...
AbstractNonlinear differential equations with fractional derivatives give general representations of...
This paper presents approximate solutions of linear system of fractional differential equations (FDE...
AbstractIn this paper, we consider Caputo type fractional differential equations of order 0<α<1 with...
Fractional derivatives are powerful tools in solving the problems of science and engineering. In thi...
AbstractFractional calculus has been used to model physical and engineering processes that are found...
summary:We use the Laplace transform method to solve certain families of fractional order differenti...
Abstract: In this paper, we illustrate application of the reduced differential transform method (RDT...
An operator-based approach for the construction of closed-form solutions to fractional differential ...
summary:We use the Laplace transform method to solve certain families of fractional order differenti...