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Dynamics and Numerical Investigations of a Fractional-Order Model of Toxoplasmosis in the Population of Human and Cats

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Date

2021

Journal Title

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Volume Title

Publisher

Pergamon-elsevier Science Ltd

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Green Open Access

No

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Abstract

In this paper an arbitrary order model for Toxoplasmosis ailment in the humanoid and feline is verbalized and explored. The dynamics of this ailment is discovered using an epidemiology type paradigm. We have proposed the fractional order multistage differential transform method for the Toxoplasmosis model. It is employed to analyze and find the elucidation for the model, and the numerical simulations have been conducted in order to study the effectiveness of the technique. The suggested algorithm can be considered as a fractional extension of the well know method known as Multistage Differential Transform Method. The sensitivity analysis of the strictures of the specimen is discussed. The numeric imitations of the projected non-integer specimens are conceded out to illustrate different dynamics of the model, which depend on R-0. (C) 2021 Elsevier Ltd. All rights reserved.

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Keywords

Cats Populace, Toxoplasmosis Disease, Fractional Derivatives, Stability, Global Stability, Ecology, Multistage Differential Transform Method, toxoplasmosis disease, multistage differential transform method, fractional derivatives, Epidemiology, Fractional ordinary differential equations, cats populace, stability, Global stability of solutions to ordinary differential equations, global stability, Fractional derivatives and integrals, Qualitative investigation and simulation of ordinary differential equation models, ecology

Fields of Science

0103 physical sciences, 01 natural sciences

Citation

Zafar, Zain Ul Abadin; Ali, Nigar; Baleanu, Dumitru (2021). "Dynamics and numerical investigations of a fractional-order model of toxoplasmosis in the population of human and cats", Chaos Solitons & Fractals, Vol. 151.

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Q1

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Q1
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OpenCitations Citation Count
21

Source

Chaos, Solitons & Fractals

Volume

151

Issue

Start Page

111261

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CrossRef : 13

Scopus : 21

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Mendeley Readers : 8

SCOPUS™ Citations

22

checked on Feb 26, 2026

Web of Science™ Citations

21

checked on Feb 26, 2026

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2

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1.7914

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3

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