On Topological Indices for Complex Indium Phosphate Network and Their Applications

A chemical compound in the form of graph terminology is known as a chemical graph. Molecules are usually represented as vertices, while their bonding or interaction is shown by edges in a molecular graph. In this paper, we computed various connectivity indices based on degrees of vertices of a chemi...

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Main Authors: Wang Hui, Lubna Sherin, Sana Javed, Sadia Khalid, Waqar Asghar, Samuel Asefa Fufa
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Complexity
Online Access:http://dx.doi.org/10.1155/2022/9707749
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author Wang Hui
Lubna Sherin
Sana Javed
Sadia Khalid
Waqar Asghar
Samuel Asefa Fufa
author_facet Wang Hui
Lubna Sherin
Sana Javed
Sadia Khalid
Waqar Asghar
Samuel Asefa Fufa
author_sort Wang Hui
collection DOAJ
description A chemical compound in the form of graph terminology is known as a chemical graph. Molecules are usually represented as vertices, while their bonding or interaction is shown by edges in a molecular graph. In this paper, we computed various connectivity indices based on degrees of vertices of a chemical graph of indium phosphide (InP). Afterward, we found the physical measures like entropy and heat of formation of InP. Then, we fitted curves between different indices and the thermodynamical properties, namely, heat of formation and entropy. Curve fitting was done in MATLAB through different methods based on linearity and nonlinearity. Furthermore, we depicted our results numerically and graphically. These numerical systems may give an approach to concentrate on the thermodynamical properties of the compound design of InP at an exceptional level that will help understand the connection between framework measurement and these actions.
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issn 1099-0526
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series Complexity
spelling doaj-art-c6ab3c71aa604b6aa9518bff4fde3f7a2025-08-20T03:23:19ZengWileyComplexity1099-05262022-01-01202210.1155/2022/9707749On Topological Indices for Complex Indium Phosphate Network and Their ApplicationsWang Hui0Lubna Sherin1Sana Javed2Sadia Khalid3Waqar Asghar4Samuel Asefa Fufa5Department of MathematicsDepartment of ChemistryDepartment of MathematicsDepartment of MathematicsDepartment of MathematicsDepartment of MathematicsA chemical compound in the form of graph terminology is known as a chemical graph. Molecules are usually represented as vertices, while their bonding or interaction is shown by edges in a molecular graph. In this paper, we computed various connectivity indices based on degrees of vertices of a chemical graph of indium phosphide (InP). Afterward, we found the physical measures like entropy and heat of formation of InP. Then, we fitted curves between different indices and the thermodynamical properties, namely, heat of formation and entropy. Curve fitting was done in MATLAB through different methods based on linearity and nonlinearity. Furthermore, we depicted our results numerically and graphically. These numerical systems may give an approach to concentrate on the thermodynamical properties of the compound design of InP at an exceptional level that will help understand the connection between framework measurement and these actions.http://dx.doi.org/10.1155/2022/9707749
spellingShingle Wang Hui
Lubna Sherin
Sana Javed
Sadia Khalid
Waqar Asghar
Samuel Asefa Fufa
On Topological Indices for Complex Indium Phosphate Network and Their Applications
Complexity
title On Topological Indices for Complex Indium Phosphate Network and Their Applications
title_full On Topological Indices for Complex Indium Phosphate Network and Their Applications
title_fullStr On Topological Indices for Complex Indium Phosphate Network and Their Applications
title_full_unstemmed On Topological Indices for Complex Indium Phosphate Network and Their Applications
title_short On Topological Indices for Complex Indium Phosphate Network and Their Applications
title_sort on topological indices for complex indium phosphate network and their applications
url http://dx.doi.org/10.1155/2022/9707749
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