Mathematical Modeling of Coronavirus Dynamics with Conformable Derivative in Liouville–Caputo Sense

Coronavirus has become a serious global phenomenon in recent times and has negative effects on the entire world economy. In this study, a fractional mathematical model formulated in fractional conformable derivative is studied. The model hinges on the concept of mammal hosts and humans. The basic pr...

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Main Authors: Ebenezer Bonyah, Zakia Hammouch, Mehmet Emir Koksal
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Journal of Mathematics
Online Access:http://dx.doi.org/10.1155/2022/8353343
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author Ebenezer Bonyah
Zakia Hammouch
Mehmet Emir Koksal
author_facet Ebenezer Bonyah
Zakia Hammouch
Mehmet Emir Koksal
author_sort Ebenezer Bonyah
collection DOAJ
description Coronavirus has become a serious global phenomenon in recent times and has negative effects on the entire world economy. In this study, a fractional mathematical model formulated in fractional conformable derivative is studied. The model hinges on the concept of mammal hosts and humans. The basic properties of the coronavirus model are investigated. The stability analysis is carried out as well as sensitivity analysis based on the reproduction number. Numerical simulation is undertaken to give impetus to the analytical results which indicate that both fractional conformable order derivative and fractional-order derivative have serious consequences in numerical result outcomes.
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issn 2314-4785
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spelling doaj-art-6f7039f41f144742a52794e803ce061c2025-02-03T06:13:35ZengWileyJournal of Mathematics2314-47852022-01-01202210.1155/2022/8353343Mathematical Modeling of Coronavirus Dynamics with Conformable Derivative in Liouville–Caputo SenseEbenezer Bonyah0Zakia Hammouch1Mehmet Emir Koksal2Department of Mathematics EducationDivision of Applied MathematicsDepartment of MathematicsCoronavirus has become a serious global phenomenon in recent times and has negative effects on the entire world economy. In this study, a fractional mathematical model formulated in fractional conformable derivative is studied. The model hinges on the concept of mammal hosts and humans. The basic properties of the coronavirus model are investigated. The stability analysis is carried out as well as sensitivity analysis based on the reproduction number. Numerical simulation is undertaken to give impetus to the analytical results which indicate that both fractional conformable order derivative and fractional-order derivative have serious consequences in numerical result outcomes.http://dx.doi.org/10.1155/2022/8353343
spellingShingle Ebenezer Bonyah
Zakia Hammouch
Mehmet Emir Koksal
Mathematical Modeling of Coronavirus Dynamics with Conformable Derivative in Liouville–Caputo Sense
Journal of Mathematics
title Mathematical Modeling of Coronavirus Dynamics with Conformable Derivative in Liouville–Caputo Sense
title_full Mathematical Modeling of Coronavirus Dynamics with Conformable Derivative in Liouville–Caputo Sense
title_fullStr Mathematical Modeling of Coronavirus Dynamics with Conformable Derivative in Liouville–Caputo Sense
title_full_unstemmed Mathematical Modeling of Coronavirus Dynamics with Conformable Derivative in Liouville–Caputo Sense
title_short Mathematical Modeling of Coronavirus Dynamics with Conformable Derivative in Liouville–Caputo Sense
title_sort mathematical modeling of coronavirus dynamics with conformable derivative in liouville caputo sense
url http://dx.doi.org/10.1155/2022/8353343
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AT mehmetemirkoksal mathematicalmodelingofcoronavirusdynamicswithconformablederivativeinliouvillecaputosense