In this paper, the solution of the multi-order differential equations, by using Mellin transform, is proposed. It is shown that the problem related to the shift of the real part of the argument of the transformed function, arising when the Mellin integral operates on the fractional derivatives, may be overcame. Then, the solution may be found for any fractional differential equation involving multi-order fractional derivatives (or integrals). The solution is found in the Mellin domain, by solving a linear set of algebraic equations, whose inverse transform gives the solution of the fractional differential equation at hands
In this paper, we introduce new functions Yρ,rν(x) as a generalization of the Krätzel function. We i...
The aim of this article is to study the matrix fractional differential equations and to find the exa...
In this work, we extended the work of [12] to approximate the solution of fractional order different...
In this paper, the solution of the multi-order differential equations, by using Mellin transform, is...
In this paper, the solution of a multi-order, multi-degree-of-freedom fractional differential equati...
In this article, we define the fractional Mellin transform by using Riemann–Liouville fractional int...
Abstract: In this article we study the basic theoretical properties of Mellin-type frac-tional integ...
AbstractThis paper presents approximate analytical solutions for systems of fractional differential ...
The linear non-homogeneous ordinary differential equations with three left-hand sided Lioville deriv...
In this work we used the Laplace transform method to solve linear fractional-order differential equa...
Abstract –This paper deals with the theory and applications of the local fractional Mellin transform...
AbstractThe purpose of this paper and some to follow is to present a new approach to fractional inte...
Integral transforms play wide and important role in mathematical physics, theoretical physics. Fouri...
In recent years Fractional Calculus is highly growing field in research because of its wide applicab...
AbstractWe consider a wide class of integral and ordinary differential equations of fractional multi...
In this paper, we introduce new functions Yρ,rν(x) as a generalization of the Krätzel function. We i...
The aim of this article is to study the matrix fractional differential equations and to find the exa...
In this work, we extended the work of [12] to approximate the solution of fractional order different...
In this paper, the solution of the multi-order differential equations, by using Mellin transform, is...
In this paper, the solution of a multi-order, multi-degree-of-freedom fractional differential equati...
In this article, we define the fractional Mellin transform by using Riemann–Liouville fractional int...
Abstract: In this article we study the basic theoretical properties of Mellin-type frac-tional integ...
AbstractThis paper presents approximate analytical solutions for systems of fractional differential ...
The linear non-homogeneous ordinary differential equations with three left-hand sided Lioville deriv...
In this work we used the Laplace transform method to solve linear fractional-order differential equa...
Abstract –This paper deals with the theory and applications of the local fractional Mellin transform...
AbstractThe purpose of this paper and some to follow is to present a new approach to fractional inte...
Integral transforms play wide and important role in mathematical physics, theoretical physics. Fouri...
In recent years Fractional Calculus is highly growing field in research because of its wide applicab...
AbstractWe consider a wide class of integral and ordinary differential equations of fractional multi...
In this paper, we introduce new functions Yρ,rν(x) as a generalization of the Krätzel function. We i...
The aim of this article is to study the matrix fractional differential equations and to find the exa...
In this work, we extended the work of [12] to approximate the solution of fractional order different...