Computational analysis of COVID-19 model outbreak with singular and nonlocal operator

Author:

Amin Maryam1,Farman Muhammad2,Akgül Ali3,Partohaghighi Mohammad4,Jarad Fahd56

Affiliation:

1. Department of Mathematics and Statistics, University of Lahore, Lahore-54590, Pakistan

2. Department of Mathematics, Khawaja Fareed University of Engineering and Information Technology, Rahim Yar Khan, Pakistan

3. Art and Science Faculty, Department of Mathematics, Siirt University, 56100 Siirt, Turkey

4. Department of Mathematics, Clarkson University, Potsdam, NY 13699, USA

5. Department of Mathematics, Cankaya University, Etimesgut, Ankara, Turkey

6. Department of Medical Research, China Medical University Hospital, China Medical University, Taichung, Taiwan

Abstract

<abstract><p>The SARS-CoV-2 virus pandemic remains a pressing issue with its unpredictable nature, and it spreads worldwide through human interaction. Current research focuses on the investigation and analysis of fractional epidemic models that discuss the temporal dynamics of the SARS-CoV-2 virus in the community. In this work, we choose a fractional-order mathematical model to examine the transmissibility in the community of several symptoms of COVID-19 in the sense of the Caputo operator. Sensitivity analysis of $ R_{0} $ and disease-free local stability of the system are checked. Also, with the assistance of fixed point theory, we demonstrate the existence and uniqueness of the system. In addition, numerically we solve the fractional model and presented some simulation results via actual estimation parameters. Graphically we displayed the effects of numerous model parameters and memory indexes. The numerical outcomes show the reliability, validation, and accuracy of the scheme.</p></abstract>

Publisher

American Institute of Mathematical Sciences (AIMS)

Subject

General Mathematics

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