On the Qualitative Analysis of Solutions of Two Fractional Order Fractional Differential Equations

Author:

Bolat Yasar1,Gevgeşoğlu Murat1ORCID,Chatzarakis George E.2

Affiliation:

1. Department of Mathematics, Faculty of Arts & Sciences, Kastamonu University, Kastamonu 37210, Turkey

2. Department of Electrical and Electronic Engineering Educators, School of Pedagogical & Technological Education, 15122 Marousi, Greece

Abstract

In applied sciences, besides the importance of obtaining the analytical solutions of differential equations with constant coefficients, the qualitative analysis of the solutions of such equations is also very important. Due to this importance, in this study, a qualitative analysis of the solutions of a delayed and constant coefficient fractal differential equation with more than one fractional derivative was performed. In the equation under consideration, the derivatives are the Riemann–Liouville fractional derivatives. In the proof of the obtained results, Laplace transform formulas of the Riemann–Liouville fractional derivative and some inequalities are used. We also provide some examples to check the accuracy of our results.

Publisher

MDPI AG

Reference20 articles.

1. Hilfer, R. (2000). Applications of Fractional Calculus in Physics, World Scientific.

2. Kilbas, A.A., Srivastava, H.M., and Trujillo, J.J. (2006). Theory and Applications of Fractional Differential Equations. North-Holland Mathematics Studies, Elsevier Science B.V.

3. Kiryakova, V. (1994). Generalized Fractional Calculus and Applications, John Wiley & Sons, Inc.

4. Lakshmikantham, V., Leela, S., and Devi, J.V. (2009). Theory of Fractional Dynamic Systems, Cambridge Scientific Publishers.

5. Miller, K.S., and Ross, B. (1993). An Introduction to the Fractional Calculus and Differential Equations, John Wiley.

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