On Topological Analysis of Entropy Measures for Silicon Carbides Networks

The silicon material has provoked and stimulated significant research concern to a considerable extent taking into account its marvelous mechanical, optical, and electronic properties. Naturally, silicons are semiconductors and are utilized in the formation of various materials. For example, it is u...

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Autores principales: Xing-Long Wang, Muhammad Kamran Siddiqui, Syed Ajaz K. Kirmani, Shazia Manzoor, Sarfraz Ahmad, Mlamuli Dhlamini
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Publicado: Hindawi-Wiley 2021
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Acceso en línea:https://doaj.org/article/932e043c12964bc6aa024b7e659651e8
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spelling oai:doaj.org-article:932e043c12964bc6aa024b7e659651e82021-11-15T01:19:01ZOn Topological Analysis of Entropy Measures for Silicon Carbides Networks1099-052610.1155/2021/4178503https://doaj.org/article/932e043c12964bc6aa024b7e659651e82021-01-01T00:00:00Zhttp://dx.doi.org/10.1155/2021/4178503https://doaj.org/toc/1099-0526The silicon material has provoked and stimulated significant research concern to a considerable extent taking into account its marvelous mechanical, optical, and electronic properties. Naturally, silicons are semiconductors and are utilized in the formation of various materials. For example, it is used in assembling the electronic based gadgets. In this article, we have studied the 2D structure of silicon carbide Si2C3−Im,n and Si2C3−IIm,n and then continued to discuss some degree grounded topological descriptors in association with their corresponding entropy measures. We extend this computation to the quantitative and pictorial comparisons which could be beneficial in the structure amendment for effective implementation.Xing-Long WangMuhammad Kamran SiddiquiSyed Ajaz K. KirmaniShazia ManzoorSarfraz AhmadMlamuli DhlaminiHindawi-WileyarticleElectronic computers. Computer scienceQA75.5-76.95ENComplexity, Vol 2021 (2021)
institution DOAJ
collection DOAJ
language EN
topic Electronic computers. Computer science
QA75.5-76.95
spellingShingle Electronic computers. Computer science
QA75.5-76.95
Xing-Long Wang
Muhammad Kamran Siddiqui
Syed Ajaz K. Kirmani
Shazia Manzoor
Sarfraz Ahmad
Mlamuli Dhlamini
On Topological Analysis of Entropy Measures for Silicon Carbides Networks
description The silicon material has provoked and stimulated significant research concern to a considerable extent taking into account its marvelous mechanical, optical, and electronic properties. Naturally, silicons are semiconductors and are utilized in the formation of various materials. For example, it is used in assembling the electronic based gadgets. In this article, we have studied the 2D structure of silicon carbide Si2C3−Im,n and Si2C3−IIm,n and then continued to discuss some degree grounded topological descriptors in association with their corresponding entropy measures. We extend this computation to the quantitative and pictorial comparisons which could be beneficial in the structure amendment for effective implementation.
format article
author Xing-Long Wang
Muhammad Kamran Siddiqui
Syed Ajaz K. Kirmani
Shazia Manzoor
Sarfraz Ahmad
Mlamuli Dhlamini
author_facet Xing-Long Wang
Muhammad Kamran Siddiqui
Syed Ajaz K. Kirmani
Shazia Manzoor
Sarfraz Ahmad
Mlamuli Dhlamini
author_sort Xing-Long Wang
title On Topological Analysis of Entropy Measures for Silicon Carbides Networks
title_short On Topological Analysis of Entropy Measures for Silicon Carbides Networks
title_full On Topological Analysis of Entropy Measures for Silicon Carbides Networks
title_fullStr On Topological Analysis of Entropy Measures for Silicon Carbides Networks
title_full_unstemmed On Topological Analysis of Entropy Measures for Silicon Carbides Networks
title_sort on topological analysis of entropy measures for silicon carbides networks
publisher Hindawi-Wiley
publishDate 2021
url https://doaj.org/article/932e043c12964bc6aa024b7e659651e8
work_keys_str_mv AT xinglongwang ontopologicalanalysisofentropymeasuresforsiliconcarbidesnetworks
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AT shaziamanzoor ontopologicalanalysisofentropymeasuresforsiliconcarbidesnetworks
AT sarfrazahmad ontopologicalanalysisofentropymeasuresforsiliconcarbidesnetworks
AT mlamulidhlamini ontopologicalanalysisofentropymeasuresforsiliconcarbidesnetworks
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