On topological properties of hierarchical hypercube network based on Ve and Ev degree

Grid implementation is a principal unit in electrical and electronic engineering but it depends on the domain of these projects. For example, depending on the grid and the signal processing in that fields of electronic and electrical engineering, such as more abstract mathematics in signal conversio...

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Main Authors: Zahra Nida, Ibrahim Muhammad
Format: Article
Language:English
Published: De Gruyter 2021-06-01
Series:Main Group Metal Chemistry
Subjects:
Online Access:https://doi.org/10.1515/mgmc-2021-0022
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author Zahra Nida
Ibrahim Muhammad
author_facet Zahra Nida
Ibrahim Muhammad
author_sort Zahra Nida
collection DOAJ
description Grid implementation is a principal unit in electrical and electronic engineering but it depends on the domain of these projects. For example, depending on the grid and the signal processing in that fields of electronic and electrical engineering, such as more abstract mathematics in signal conversion and e-transmission theory griding, etc. Provides transmission through grid nodes. Graph theory is very useful in research fields. As topological indices, there are more actual numbers associated with chemical composition complaints connected to the chemical grid with physical and chemical properties and reactions. In this paper, we expand the work to interconnected grid and examine the first Zagreb, the second Zagreb, Randic, sum-connectivity, harmonic, geometric, and atom bond connectivity exponents of hierarchical hypercube network based on vertex-edge and edge-vertex degree.
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spelling doaj.art-29ef65664fdb48bc8e04168c7d553d992022-12-22T04:17:12ZengDe GruyterMain Group Metal Chemistry0792-12412191-02192021-06-0144118519310.1515/mgmc-2021-0022On topological properties of hierarchical hypercube network based on Ve and Ev degreeZahra Nida0Ibrahim Muhammad1Centre for Advanced Studies in Pure and Applied Mathematics, Bahauddin Zakariya UniversityMultan, PakistanCentre for Advanced Studies in Pure and Applied Mathematics, Bahauddin Zakariya UniversityMultan, PakistanGrid implementation is a principal unit in electrical and electronic engineering but it depends on the domain of these projects. For example, depending on the grid and the signal processing in that fields of electronic and electrical engineering, such as more abstract mathematics in signal conversion and e-transmission theory griding, etc. Provides transmission through grid nodes. Graph theory is very useful in research fields. As topological indices, there are more actual numbers associated with chemical composition complaints connected to the chemical grid with physical and chemical properties and reactions. In this paper, we expand the work to interconnected grid and examine the first Zagreb, the second Zagreb, Randic, sum-connectivity, harmonic, geometric, and atom bond connectivity exponents of hierarchical hypercube network based on vertex-edge and edge-vertex degree.https://doi.org/10.1515/mgmc-2021-0022hierarchical hypercube network (hhn)edge-vertex degreevertex-edge degreemolecular topological indices
spellingShingle Zahra Nida
Ibrahim Muhammad
On topological properties of hierarchical hypercube network based on Ve and Ev degree
Main Group Metal Chemistry
hierarchical hypercube network (hhn)
edge-vertex degree
vertex-edge degree
molecular topological indices
title On topological properties of hierarchical hypercube network based on Ve and Ev degree
title_full On topological properties of hierarchical hypercube network based on Ve and Ev degree
title_fullStr On topological properties of hierarchical hypercube network based on Ve and Ev degree
title_full_unstemmed On topological properties of hierarchical hypercube network based on Ve and Ev degree
title_short On topological properties of hierarchical hypercube network based on Ve and Ev degree
title_sort on topological properties of hierarchical hypercube network based on ve and ev degree
topic hierarchical hypercube network (hhn)
edge-vertex degree
vertex-edge degree
molecular topological indices
url https://doi.org/10.1515/mgmc-2021-0022
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