On computation and analysis of topological index-based invariants for complex coronoid systems

In chemical graph theory, benzenoid systems are interrogated as they exhibit the chemical compounds known as benzenoid hydrocarbons. Benzenoid schemes are circumscribed as planar connected finite graphs having no cut vertices wherein the entire internal sections are collaboratively congruent regular...

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Main Authors: Rashid, Muhammad Aamer, Ahmad, Sarfraz, Siddiqui, Muhammad Kamran, Kaabar, Mohammed K. A.
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Published: Hindawi Limited 2021
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Online Access:http://eprints.um.edu.my/35789/
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spelling my.um.eprints.357892023-11-27T07:56:47Z http://eprints.um.edu.my/35789/ On computation and analysis of topological index-based invariants for complex coronoid systems Rashid, Muhammad Aamer Ahmad, Sarfraz Siddiqui, Muhammad Kamran Kaabar, Mohammed K. A. QA Mathematics In chemical graph theory, benzenoid systems are interrogated as they exhibit the chemical compounds known as benzenoid hydrocarbons. Benzenoid schemes are circumscribed as planar connected finite graphs having no cut vertices wherein the entire internal sections are collaboratively congruent regular hexagon. The past couple of decennium has acknowledged an extravagant development regarding implementation of information theoretic framework in miscellaneous ramification of science, for instance, in social sciences, biological, physical, and engineering. Explicitly, this tremendous improvement has been outstanding in the field of soft computing, molecular biology, and information technology. The information theory, delineated by Claud Shannon, has no less importance when it was considered. Shannon put forwarded the apprehension of entropy to enumerate upper bounds in transmission rates in telephonic channels, in optical communication, and in wireless. The prestigious feature of entropy is that it entitles the amount of uncertainty in a system. The substantial participation of this paper is to explore characteristics of graph entropies and then keep moving forward to talk about the formation of coronoid polycyclic aromatic hydrocarbons. Likewise, we estimate entropies through precise topological indices established on degree of terminal nodes. © 2021 Muhammad Aamer Rashid et al. Hindawi Limited 2021 Article PeerReviewed Rashid, Muhammad Aamer and Ahmad, Sarfraz and Siddiqui, Muhammad Kamran and Kaabar, Mohammed K. A. (2021) On computation and analysis of topological index-based invariants for complex coronoid systems. Complexity, 2021. ISSN 1076-2787, DOI https://doi.org/10.1155/2021/4646501 <https://doi.org/10.1155/2021/4646501>. 10.1155/2021/4646501
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
spellingShingle QA Mathematics
Rashid, Muhammad Aamer
Ahmad, Sarfraz
Siddiqui, Muhammad Kamran
Kaabar, Mohammed K. A.
On computation and analysis of topological index-based invariants for complex coronoid systems
description In chemical graph theory, benzenoid systems are interrogated as they exhibit the chemical compounds known as benzenoid hydrocarbons. Benzenoid schemes are circumscribed as planar connected finite graphs having no cut vertices wherein the entire internal sections are collaboratively congruent regular hexagon. The past couple of decennium has acknowledged an extravagant development regarding implementation of information theoretic framework in miscellaneous ramification of science, for instance, in social sciences, biological, physical, and engineering. Explicitly, this tremendous improvement has been outstanding in the field of soft computing, molecular biology, and information technology. The information theory, delineated by Claud Shannon, has no less importance when it was considered. Shannon put forwarded the apprehension of entropy to enumerate upper bounds in transmission rates in telephonic channels, in optical communication, and in wireless. The prestigious feature of entropy is that it entitles the amount of uncertainty in a system. The substantial participation of this paper is to explore characteristics of graph entropies and then keep moving forward to talk about the formation of coronoid polycyclic aromatic hydrocarbons. Likewise, we estimate entropies through precise topological indices established on degree of terminal nodes. © 2021 Muhammad Aamer Rashid et al.
format Article
author Rashid, Muhammad Aamer
Ahmad, Sarfraz
Siddiqui, Muhammad Kamran
Kaabar, Mohammed K. A.
author_facet Rashid, Muhammad Aamer
Ahmad, Sarfraz
Siddiqui, Muhammad Kamran
Kaabar, Mohammed K. A.
author_sort Rashid, Muhammad Aamer
title On computation and analysis of topological index-based invariants for complex coronoid systems
title_short On computation and analysis of topological index-based invariants for complex coronoid systems
title_full On computation and analysis of topological index-based invariants for complex coronoid systems
title_fullStr On computation and analysis of topological index-based invariants for complex coronoid systems
title_full_unstemmed On computation and analysis of topological index-based invariants for complex coronoid systems
title_sort on computation and analysis of topological index-based invariants for complex coronoid systems
publisher Hindawi Limited
publishDate 2021
url http://eprints.um.edu.my/35789/
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