Discrete dynamic model of a disease-causing organism caused by D-quantum Tsallis entropy

Many aspects of the asymmetric organ system are controlled by the symmetry model (R&L) of the disease-causing organism pathway, but sensitive matters like somites and limb buds need to be shielded from its influence. Because symmetric and asymmetric structures develop from similar or nearby matt...

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Main Authors: Al-Saidi, Nadia Mohammed Ghanim, Yahya, Husam, Obaiys, Suzan Jabbar
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Published: MDPI 2022
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Online Access:http://eprints.um.edu.my/41369/
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spelling my.um.eprints.413692023-09-20T07:28:40Z http://eprints.um.edu.my/41369/ Discrete dynamic model of a disease-causing organism caused by D-quantum Tsallis entropy Al-Saidi, Nadia Mohammed Ghanim Yahya, Husam Obaiys, Suzan Jabbar QA Mathematics QA75 Electronic computers. Computer science Many aspects of the asymmetric organ system are controlled by the symmetry model (R&L) of the disease-causing organism pathway, but sensitive matters like somites and limb buds need to be shielded from its influence. Because symmetric and asymmetric structures develop from similar or nearby matters and utilize many of the same signaling pathways, attaining symmetry is made more difficult. On this note, we aim to generalize some important measurements in view of the 2D-quantum calculus (q-calculus, q-analogues or q-disease), including the dimensional of fractals and Tsallis entropy (2D-quantum Tsallis entropy (2D-QTE)). The process is based on producing a generalization of the maximum value of the Tsallis entropy in view of the quantum calculus. Then by considering the maximum 2D-QTE, we design a discrete system. As an application, by using the 2D-QTE, we depict a discrete dynamic system that is afflicted with a disease-causing organism (DCO). We look at the system's positive and maximum solutions. Studies are done on equilibrium and stability. We will also develop a novel design for the fundamental reproductive ratio based on the 2D-QTE. MDPI 2022-08 Article PeerReviewed Al-Saidi, Nadia Mohammed Ghanim and Yahya, Husam and Obaiys, Suzan Jabbar (2022) Discrete dynamic model of a disease-causing organism caused by D-quantum Tsallis entropy. Symmetry-Basel, 14 (8). ISSN 2073-8994, DOI https://doi.org/10.3390/sym14081677 <https://doi.org/10.3390/sym14081677>. 10.3390/sym14081677
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic QA Mathematics
QA75 Electronic computers. Computer science
spellingShingle QA Mathematics
QA75 Electronic computers. Computer science
Al-Saidi, Nadia Mohammed Ghanim
Yahya, Husam
Obaiys, Suzan Jabbar
Discrete dynamic model of a disease-causing organism caused by D-quantum Tsallis entropy
description Many aspects of the asymmetric organ system are controlled by the symmetry model (R&L) of the disease-causing organism pathway, but sensitive matters like somites and limb buds need to be shielded from its influence. Because symmetric and asymmetric structures develop from similar or nearby matters and utilize many of the same signaling pathways, attaining symmetry is made more difficult. On this note, we aim to generalize some important measurements in view of the 2D-quantum calculus (q-calculus, q-analogues or q-disease), including the dimensional of fractals and Tsallis entropy (2D-quantum Tsallis entropy (2D-QTE)). The process is based on producing a generalization of the maximum value of the Tsallis entropy in view of the quantum calculus. Then by considering the maximum 2D-QTE, we design a discrete system. As an application, by using the 2D-QTE, we depict a discrete dynamic system that is afflicted with a disease-causing organism (DCO). We look at the system's positive and maximum solutions. Studies are done on equilibrium and stability. We will also develop a novel design for the fundamental reproductive ratio based on the 2D-QTE.
format Article
author Al-Saidi, Nadia Mohammed Ghanim
Yahya, Husam
Obaiys, Suzan Jabbar
author_facet Al-Saidi, Nadia Mohammed Ghanim
Yahya, Husam
Obaiys, Suzan Jabbar
author_sort Al-Saidi, Nadia Mohammed Ghanim
title Discrete dynamic model of a disease-causing organism caused by D-quantum Tsallis entropy
title_short Discrete dynamic model of a disease-causing organism caused by D-quantum Tsallis entropy
title_full Discrete dynamic model of a disease-causing organism caused by D-quantum Tsallis entropy
title_fullStr Discrete dynamic model of a disease-causing organism caused by D-quantum Tsallis entropy
title_full_unstemmed Discrete dynamic model of a disease-causing organism caused by D-quantum Tsallis entropy
title_sort discrete dynamic model of a disease-causing organism caused by d-quantum tsallis entropy
publisher MDPI
publishDate 2022
url http://eprints.um.edu.my/41369/
_version_ 1778161662999658496
score 13.18916