Edge Weight-Based Entropy of Magnesium Iodide Graph

Among the inorganic compounds, there are many influential crystalline structures, and magnesium iodide is the most selective. In the making of medicine and its development, magnesium iodide is considered a multipurpose and rich compound. Chemical structures and networks can be studied by given tools...

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Main Authors: Maryam Salem Alatawi, Ali Ahmad, Ali N. A. Koam, Sadia Husain, Muhammad Azeem
Format: Article
Language:English
Published: Wiley 2021-01-01
Series:Journal of Mathematics
Online Access:http://dx.doi.org/10.1155/2021/4330498
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author Maryam Salem Alatawi
Ali Ahmad
Ali N. A. Koam
Sadia Husain
Muhammad Azeem
author_facet Maryam Salem Alatawi
Ali Ahmad
Ali N. A. Koam
Sadia Husain
Muhammad Azeem
author_sort Maryam Salem Alatawi
collection DOAJ
description Among the inorganic compounds, there are many influential crystalline structures, and magnesium iodide is the most selective. In the making of medicine and its development, magnesium iodide is considered a multipurpose and rich compound. Chemical structures and networks can be studied by given tools of molecular graph theory. Given tools of molecular graph theory can be studied for chemical structures and networks, which are considered economical with simple methodology. Edge weight-based entropy is a recent advent tool of molecular graph theory to study chemical networks and structures. It provides the structural information of chemical networks or their related build-up graphs and highlights the molecular properties in the form of a polynomial function. In this work, we provide the edge weight-based entropy of magnesium iodide structure and compute different entropies, such as Zagreb and atom bond connectivity entropies.
format Article
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issn 2314-4785
language English
publishDate 2021-01-01
publisher Wiley
record_format Article
series Journal of Mathematics
spelling doaj-art-e8f28a26c2e04cf28fb34f29ce9420972025-08-20T02:21:53ZengWileyJournal of Mathematics2314-47852021-01-01202110.1155/2021/4330498Edge Weight-Based Entropy of Magnesium Iodide GraphMaryam Salem Alatawi0Ali Ahmad1Ali N. A. Koam2Sadia Husain3Muhammad Azeem4Department of MathematicsCollege of Computer Science & Information TechnologyDepartment of MathematicsCollege of Computer Science & Information TechnologyDepartment of MathematicsAmong the inorganic compounds, there are many influential crystalline structures, and magnesium iodide is the most selective. In the making of medicine and its development, magnesium iodide is considered a multipurpose and rich compound. Chemical structures and networks can be studied by given tools of molecular graph theory. Given tools of molecular graph theory can be studied for chemical structures and networks, which are considered economical with simple methodology. Edge weight-based entropy is a recent advent tool of molecular graph theory to study chemical networks and structures. It provides the structural information of chemical networks or their related build-up graphs and highlights the molecular properties in the form of a polynomial function. In this work, we provide the edge weight-based entropy of magnesium iodide structure and compute different entropies, such as Zagreb and atom bond connectivity entropies.http://dx.doi.org/10.1155/2021/4330498
spellingShingle Maryam Salem Alatawi
Ali Ahmad
Ali N. A. Koam
Sadia Husain
Muhammad Azeem
Edge Weight-Based Entropy of Magnesium Iodide Graph
Journal of Mathematics
title Edge Weight-Based Entropy of Magnesium Iodide Graph
title_full Edge Weight-Based Entropy of Magnesium Iodide Graph
title_fullStr Edge Weight-Based Entropy of Magnesium Iodide Graph
title_full_unstemmed Edge Weight-Based Entropy of Magnesium Iodide Graph
title_short Edge Weight-Based Entropy of Magnesium Iodide Graph
title_sort edge weight based entropy of magnesium iodide graph
url http://dx.doi.org/10.1155/2021/4330498
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AT aliahmad edgeweightbasedentropyofmagnesiumiodidegraph
AT alinakoam edgeweightbasedentropyofmagnesiumiodidegraph
AT sadiahusain edgeweightbasedentropyofmagnesiumiodidegraph
AT muhammadazeem edgeweightbasedentropyofmagnesiumiodidegraph