Vertex-Edge-Degree-Based Topological Properties for Hex-Derived Networks

A topological index can be focused on uprising of a chemical structure into a real number. The degree-based topological indices have an active place among all topological indices. These topological descriptors intentionally associate certain physicochemical assets of the corresponding chemical compo...

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Main Authors: Ali Ahmad, Muhammad Imran
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Complexity
Online Access:http://dx.doi.org/10.1155/2022/7025480
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author Ali Ahmad
Muhammad Imran
author_facet Ali Ahmad
Muhammad Imran
author_sort Ali Ahmad
collection DOAJ
description A topological index can be focused on uprising of a chemical structure into a real number. The degree-based topological indices have an active place among all topological indices. These topological descriptors intentionally associate certain physicochemical assets of the corresponding chemical compounds. Graph theory plays a very useful role in such type of research directions. The hex-derived networks have vast applications in computer science, physical sciences, and medical science, and these networks are constructed by hexagonal mesh networks. In this paper, we determined the exact values of vertex-edge-degree-based topological descriptors for hex-derived networks HDN1p and HDN2p, which are generated by the hexagonal network of dimension p.
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institution Kabale University
issn 1099-0526
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spelling doaj-art-c35a428a420849a68afd5e86e7e997e12025-02-03T06:04:53ZengWileyComplexity1099-05262022-01-01202210.1155/2022/7025480Vertex-Edge-Degree-Based Topological Properties for Hex-Derived NetworksAli Ahmad0Muhammad Imran1College of Computer Science & Information Technology Jazan UniversityDepartment of Mathematical SciencesA topological index can be focused on uprising of a chemical structure into a real number. The degree-based topological indices have an active place among all topological indices. These topological descriptors intentionally associate certain physicochemical assets of the corresponding chemical compounds. Graph theory plays a very useful role in such type of research directions. The hex-derived networks have vast applications in computer science, physical sciences, and medical science, and these networks are constructed by hexagonal mesh networks. In this paper, we determined the exact values of vertex-edge-degree-based topological descriptors for hex-derived networks HDN1p and HDN2p, which are generated by the hexagonal network of dimension p.http://dx.doi.org/10.1155/2022/7025480
spellingShingle Ali Ahmad
Muhammad Imran
Vertex-Edge-Degree-Based Topological Properties for Hex-Derived Networks
Complexity
title Vertex-Edge-Degree-Based Topological Properties for Hex-Derived Networks
title_full Vertex-Edge-Degree-Based Topological Properties for Hex-Derived Networks
title_fullStr Vertex-Edge-Degree-Based Topological Properties for Hex-Derived Networks
title_full_unstemmed Vertex-Edge-Degree-Based Topological Properties for Hex-Derived Networks
title_short Vertex-Edge-Degree-Based Topological Properties for Hex-Derived Networks
title_sort vertex edge degree based topological properties for hex derived networks
url http://dx.doi.org/10.1155/2022/7025480
work_keys_str_mv AT aliahmad vertexedgedegreebasedtopologicalpropertiesforhexderivednetworks
AT muhammadimran vertexedgedegreebasedtopologicalpropertiesforhexderivednetworks