In this paper, a sinc-collocation method is described to determine the approximate solution of fractional order boundary value problem (FBVP). The results obtained are presented as two new theorems. The fractional derivatives are defined in the Caputo sense, which is often used in fractional calculus. In order to demonstrate the efficiency and capacity of the present method, it is applied to some FBVP with variable coefficients. Obtained results are compared to exact solutions as well as Cubic Spline solutions. The comparisons can be used to conclude that sinc-collocation method is powerful and promising method for determining the approximate solutions of FBVPs in different types of scenarios. © 2015 Sertan Alkan et al., published by De Gru...
In this paper, a numerical method for solving the fractional-order variational problems (FVPs) with ...
AbstractSinc collocation method is proven to provide an exponential convergence rate in solving line...
In this work, our aim is to obtain a numerical solution to some fractional differential equations. I...
Abstract In this study, the sinc collocation method is used to find an approximate solution of a sys...
In this paper we present an approximate solution of a fractional order two-point boundary value prob...
We employ the sinc-Galerkin method to obtain approximate solutions of space-fractional order partial...
AbstractThe spline collocation method is a competent and highly effective mathematical tool for cons...
We use collocation methods to solve fractional boundary value problems. Analytically, we study the e...
The introduction of non-integer derivatives into the models of many processes of science and enginee...
The introduction of non-integer derivatives into the models of many processes of science and enginee...
The introduction of non-integer derivatives into the models of many processes of science and enginee...
The introduction of non-integer derivatives into the models of many processes of science and enginee...
The introduction of non-integer derivatives into the models of many processes of science and enginee...
n this paper, we examined a wide class of the variable order fractional problems such as linear and ...
Nowadays, fractional differential equations are a well established tool to model phenomena from the ...
In this paper, a numerical method for solving the fractional-order variational problems (FVPs) with ...
AbstractSinc collocation method is proven to provide an exponential convergence rate in solving line...
In this work, our aim is to obtain a numerical solution to some fractional differential equations. I...
Abstract In this study, the sinc collocation method is used to find an approximate solution of a sys...
In this paper we present an approximate solution of a fractional order two-point boundary value prob...
We employ the sinc-Galerkin method to obtain approximate solutions of space-fractional order partial...
AbstractThe spline collocation method is a competent and highly effective mathematical tool for cons...
We use collocation methods to solve fractional boundary value problems. Analytically, we study the e...
The introduction of non-integer derivatives into the models of many processes of science and enginee...
The introduction of non-integer derivatives into the models of many processes of science and enginee...
The introduction of non-integer derivatives into the models of many processes of science and enginee...
The introduction of non-integer derivatives into the models of many processes of science and enginee...
The introduction of non-integer derivatives into the models of many processes of science and enginee...
n this paper, we examined a wide class of the variable order fractional problems such as linear and ...
Nowadays, fractional differential equations are a well established tool to model phenomena from the ...
In this paper, a numerical method for solving the fractional-order variational problems (FVPs) with ...
AbstractSinc collocation method is proven to provide an exponential convergence rate in solving line...
In this work, our aim is to obtain a numerical solution to some fractional differential equations. I...