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A Numerical Study of Dengue Internal Transmission Model With Fractional Piecewise Derivative

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Date

2022

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Volume Title

Publisher

Elsevier

Open Access Color

GOLD

Green Open Access

No

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Top 10%
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Abstract

The goal of this paper is to study the dynamics of the dengue internal transmission model using a novel piecewise derivative approach in the sense of singular and non-singular kernels. The singular kernel operator is in the sense of Caputo, whereas the non-singular kernel operator is the Atangana-Baleanu Caputo operator. The existence and uniqueness of a solution with piecewise derivative is presented for the considered problem by using fixed point theorems. The suggested problem's approximate solution is demonstrated using the piecewise numerical iterative Newton polynomial approach. A numerical scheme for piecewise derivatives is established in terms of singular and non-singular kernels. The numerical simulation for the piecewise derivable problem under consideration is depicted using data for various fractional orders. This work makes the idea of piecewise derivatives and the dynamics of the crossover problem much clearer.

Description

Yassen Ali, Mansour Fathey/0000-0002-3952-4341; Ahmad, Shabir/0000-0002-5610-6248; Alam, Mohammad Mahtab/0000-0003-3966-6988

Keywords

Denguemodel, Piecewisederivative, Caputooperator, Atangana-Baleanuoperator, QC1-999, Caputo operator, Operator (biology), Theory and Applications of Fractional Differential Equations, Mathematical analysis, Biochemistry, Gene, Piecewise derivative, Health Sciences, FOS: Mathematics, Dengue model, Anomalous Diffusion Modeling and Analysis, Physics, Applied Mathematics, Public Health, Environmental and Occupational Health, Fractional calculus, Pure mathematics, Applied mathematics, Fractional Derivatives, Chemistry, Piecewise, Modeling and Simulation, Disease Transmission and Population Dynamics, Physical Sciences, Kernel (algebra), Repressor, Medicine, Uniqueness, Transcription factor, Atangana–Baleanu operator, Mathematics

Fields of Science

01 natural sciences, 0103 physical sciences

Citation

Ahmad, Shabir;...et.al. (2022). "A numerical study of dengue internal transmission model with fractional piecewise derivative", Results in Physics, Vol.39.

WoS Q

Q1

Scopus Q

Q1
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OpenCitations Citation Count
20

Source

Results in Physics

Volume

39

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CrossRef : 14

Scopus : 24

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Mendeley Readers : 13

SCOPUS™ Citations

24

checked on Feb 24, 2026

Web of Science™ Citations

23

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1

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