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On a Nonlinear Fractional Order Model of Dengue Fever Disease Under Caputo-Fabrizio Derivative

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Date

2020

Journal Title

Journal ISSN

Volume Title

Publisher

Elsevier

Open Access Color

GOLD

Green Open Access

No

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No
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Top 1%
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Top 10%
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Top 1%

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Abstract

In this manuscript, we investigate epidemic model of dengue fever disease under Caputo and Fabrizio fractional derivative abbreviated as (CFFD). The respective investigation is devoted to qualitative theory of existence of solution for the model under consideration by using fixed point theory. After the establishing the qualitative aspect, we apply Laplace transform coupled with Ado-mian decomposition method to develop an algorithm for semi analytical solution under CFFD. In same line, we also develop the semi analytical solution for the considered model under usual Caputo fractional derivative (CFD). By using Matlab, we present both type of solutions via graphs and hence give some comparative remarks about the nature of the solutions of both derivatives. (C) 2020 The Authors. Published by Elsevier B.V. on behalf of Faculty of Engineering, Alexandria University. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/ licenses/by-nc-nd/4.0/).

Description

Shah, Kamal/0000-0002-8851-4844

Keywords

Semi Analytical Solution, Epidemic Models, Caputo - Fabrizio Fractional Derivative, Laplace Adomian Decompo-Sition Method, Laplace Adomian decomposition method, Caputo – Fabrizio fractional derivative, TA1-2040, Engineering (General). Civil engineering (General), Epidemic models, Semi analytical solution

Fields of Science

0103 physical sciences, 01 natural sciences

Citation

Shah, Kamal; Jarad, Fahd; Abdeljawad, Thabet (2020). "On a nonlinear fractional order model of dengue fever disease under Caputo-Fabrizio derivative", Alexandria Engineering Journal, Vol. 59, No. 4, pp. 2305-2313.

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Q1

Scopus Q

Q1
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OpenCitations Citation Count
97

Source

Alexandria Engineering Journal

Volume

59

Issue

4

Start Page

2305

End Page

2313
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Citations

CrossRef : 99

Scopus : 108

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Mendeley Readers : 29

SCOPUS™ Citations

111

checked on Feb 24, 2026

Web of Science™ Citations

98

checked on Feb 24, 2026

Page Views

3

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3.38177469

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3

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