On topological aspects of degree based entropy for two carbon nanosheets

The entropy-based procedures from the configuration of chemical graphs and multifaceted networks, several graph properties have been utilized. For computing, the organizational evidence of organic graphs and multifaceted networks, the graph entropies have converted the information-theoretic magnitud...

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Main Authors: Manzoor Shazia, Chu Yu-Ming, Siddiqui Muhammad Kamran, Ahmad Sarfraz
Format: Article
Language:English
Published: De Gruyter 2020-12-01
Series:Main Group Metal Chemistry
Subjects:
Online Access:https://doi.org/10.1515/mgmc-2020-0025
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spelling doaj-3c12f4e486954cb88c298a2da19342f62021-10-02T19:24:45ZengDe GruyterMain Group Metal Chemistry0792-12412191-02192020-12-0143120521810.1515/mgmc-2020-0025mgmc-2020-0025On topological aspects of degree based entropy for two carbon nanosheetsManzoor Shazia0Chu Yu-Ming1Siddiqui Muhammad Kamran2Ahmad Sarfraz3Department of Mathematics, COMSATS University Islamabad, Lahore Campus, PakistanDepartment of Mathematics, Huzhou University, Huzhou313000, P. R. ChinaDepartment of Mathematics, COMSATS University Islamabad, Lahore Campus, PakistanDepartment of Mathematics, COMSATS University Islamabad, Lahore Campus, PakistanThe entropy-based procedures from the configuration of chemical graphs and multifaceted networks, several graph properties have been utilized. For computing, the organizational evidence of organic graphs and multifaceted networks, the graph entropies have converted the information-theoretic magnitudes. The graph entropy portion has attracted the research community due to its potential application in chemistry. In this paper, our input is to reconnoiter graph entropies constructed on innovative information function, which is the quantity of different degree vertices along with the quantity of edges between innumerable degree vertices.”In this study, we explore two dissimilar curricula of carbon nanosheets that composed by C4 and C8 denoted by T1C4C8(S)[m, n] and T2C4C8(R)[m, n]. Additionally, we calculate entropies of these configurations by creating a connection of degree-based topological indices with the advantage of evidence occupation.https://doi.org/10.1515/mgmc-2020-0025entropy; zagreb kind indicesbalaban indexcarbon nanosheetst1c4c8(s)[m, n]t2c4c8(r)[m, n]
collection DOAJ
language English
format Article
sources DOAJ
author Manzoor Shazia
Chu Yu-Ming
Siddiqui Muhammad Kamran
Ahmad Sarfraz
spellingShingle Manzoor Shazia
Chu Yu-Ming
Siddiqui Muhammad Kamran
Ahmad Sarfraz
On topological aspects of degree based entropy for two carbon nanosheets
Main Group Metal Chemistry
entropy; zagreb kind indices
balaban index
carbon nanosheets
t1c4c8(s)[m, n]
t2c4c8(r)[m, n]
author_facet Manzoor Shazia
Chu Yu-Ming
Siddiqui Muhammad Kamran
Ahmad Sarfraz
author_sort Manzoor Shazia
title On topological aspects of degree based entropy for two carbon nanosheets
title_short On topological aspects of degree based entropy for two carbon nanosheets
title_full On topological aspects of degree based entropy for two carbon nanosheets
title_fullStr On topological aspects of degree based entropy for two carbon nanosheets
title_full_unstemmed On topological aspects of degree based entropy for two carbon nanosheets
title_sort on topological aspects of degree based entropy for two carbon nanosheets
publisher De Gruyter
series Main Group Metal Chemistry
issn 0792-1241
2191-0219
publishDate 2020-12-01
description The entropy-based procedures from the configuration of chemical graphs and multifaceted networks, several graph properties have been utilized. For computing, the organizational evidence of organic graphs and multifaceted networks, the graph entropies have converted the information-theoretic magnitudes. The graph entropy portion has attracted the research community due to its potential application in chemistry. In this paper, our input is to reconnoiter graph entropies constructed on innovative information function, which is the quantity of different degree vertices along with the quantity of edges between innumerable degree vertices.”In this study, we explore two dissimilar curricula of carbon nanosheets that composed by C4 and C8 denoted by T1C4C8(S)[m, n] and T2C4C8(R)[m, n]. Additionally, we calculate entropies of these configurations by creating a connection of degree-based topological indices with the advantage of evidence occupation.
topic entropy; zagreb kind indices
balaban index
carbon nanosheets
t1c4c8(s)[m, n]
t2c4c8(r)[m, n]
url https://doi.org/10.1515/mgmc-2020-0025
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