Abstract This paper concerns a new kind of fractional differential equation of arbitrary order by combining a multi-point boundary condition with an integral boundary condition. By solving the equation which is equivalent to the problem we are going to investigate, the Green’s functions are obtained. By defining a continuous operator on a Banach space and taking advantage of the cone theory and some fixed point theorems, the existence of multiple positive solutions for the BVPs is proved based on some properties of Green’s functions and under the circumstance that the continuous functions f satisfy certain hypothesis. Finally, examples are provided to illustrate the results
summary:In this paper we consider the existence, multiplicity, and nonexistence of positive solution...
By using two fixed-point theorems on cone, we discuss the existence results of positive solutions fo...
This paper investigates the existence and multiplicity of positive solutions for a class of higher-o...
AbstractBy means of two fixed-point theorems on a cone in Banach spaces, some existence and multipli...
This paper is concerned with the existence and multiplicity of the positive solutions for a fraction...
This article is concerned to study the existence and multiplicity of positive solutions to a class w...
© Vilnius University, 2016.In this paper, we investigate the existence of at least three positive so...
We investigate the existence of positive solutions for a class of fractional differential equations ...
By using the theory of fixed-point index on cone for differentiable operators, spectral radii of som...
In this paper, we discuss the existence and uniqueness of solutions for a new class of multi-point b...
In this paper, we apply the fixed-point theorems of γ concave and −γ convex operators to establish t...
Abstract This paper is devoted to an investigation of the multiple positive solutions to a class of ...
Abstract In this paper, we study a new boundary value problem of arbitrary order fractional differen...
AbstractBy using the fixed point index theory and Krein-Rutman theorem, the existence of positive so...
Abstract In this paper, we discuss the existence and multiplicity of positive solutions for a system...
summary:In this paper we consider the existence, multiplicity, and nonexistence of positive solution...
By using two fixed-point theorems on cone, we discuss the existence results of positive solutions fo...
This paper investigates the existence and multiplicity of positive solutions for a class of higher-o...
AbstractBy means of two fixed-point theorems on a cone in Banach spaces, some existence and multipli...
This paper is concerned with the existence and multiplicity of the positive solutions for a fraction...
This article is concerned to study the existence and multiplicity of positive solutions to a class w...
© Vilnius University, 2016.In this paper, we investigate the existence of at least three positive so...
We investigate the existence of positive solutions for a class of fractional differential equations ...
By using the theory of fixed-point index on cone for differentiable operators, spectral radii of som...
In this paper, we discuss the existence and uniqueness of solutions for a new class of multi-point b...
In this paper, we apply the fixed-point theorems of γ concave and −γ convex operators to establish t...
Abstract This paper is devoted to an investigation of the multiple positive solutions to a class of ...
Abstract In this paper, we study a new boundary value problem of arbitrary order fractional differen...
AbstractBy using the fixed point index theory and Krein-Rutman theorem, the existence of positive so...
Abstract In this paper, we discuss the existence and multiplicity of positive solutions for a system...
summary:In this paper we consider the existence, multiplicity, and nonexistence of positive solution...
By using two fixed-point theorems on cone, we discuss the existence results of positive solutions fo...
This paper investigates the existence and multiplicity of positive solutions for a class of higher-o...