Patched Network and Its Vertex-Edge Metric-Based Dimension

The p-type networks are designed with the help of CVNET at topo group Cluj and also given support by nano studio. Such networks develop new p-type surfaces and also represent the decorations of the surfaces. This patched network is designed by two repeated units. The first one is triphenylene having...

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Main Authors: Sidra Bukhari, Muhammad Kamran Jamil, Muhammad Azeem, Senesie Swaray
Format: Article
Language:English
Published: IEEE 2023-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/10012362/
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author Sidra Bukhari
Muhammad Kamran Jamil
Muhammad Azeem
Senesie Swaray
author_facet Sidra Bukhari
Muhammad Kamran Jamil
Muhammad Azeem
Senesie Swaray
author_sort Sidra Bukhari
collection DOAJ
description The p-type networks are designed with the help of CVNET at topo group Cluj and also given support by nano studio. Such networks develop new p-type surfaces and also represent the decorations of the surfaces. This patched network is designed by two repeated units. The first one is triphenylene having a Z-pen formula and the second one is triphenylene with A-phe. Furthermore, these decorations are acquired as the result of map operations represented in the CVNET software, while its assembling is conducted with the help of the nano studio program. In the literature, its topology is discussed by Omega polynomials which is an applied graph theory topic. Another most applied topic of graph theory is known as the resolvability parameter. So this article studied the resolvability parameters of patched networks, such as metric dimension, and edge metric dimension. These parameters are defined as a resolving set is a subset of vertices of a graph with a condition that each vertex of that graph has a unique code or representation with respect to the chosen subset. Its minimum cardinality is known as metric dimension, while the edge metric dimension is defined by the minimum count of members in the edge resolving set and this set is defined as according to a chosen subset each edge of a graph has unique representations, then this set is known as edge resolving set. A resolving set is a subset of vertices of a graph with a condition that each edge of that graph has a unique code or representation with respect to the chosen subset. It is minimum cardinality is known as the edge metric dimension.
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spelling doaj.art-3afaf34d3c004ac1b495c78b657bda902023-02-21T00:02:49ZengIEEEIEEE Access2169-35362023-01-01114478448510.1109/ACCESS.2023.323539810012362Patched Network and Its Vertex-Edge Metric-Based DimensionSidra Bukhari0Muhammad Kamran Jamil1https://orcid.org/0000-0001-5715-9299Muhammad Azeem2https://orcid.org/0000-0001-5181-4221Senesie Swaray3Department of Mathematics, Riphah International University, Lahore Campus, Lahore, PakistanDepartment of Mathematics, Riphah International University, Lahore Campus, Lahore, PakistanDepartment of Mathematics, Riphah International University, Lahore Campus, Lahore, PakistanTree Crops Unit, Sierra Leone Agricultural Research Institute, Freetown, Sierra LeoneThe p-type networks are designed with the help of CVNET at topo group Cluj and also given support by nano studio. Such networks develop new p-type surfaces and also represent the decorations of the surfaces. This patched network is designed by two repeated units. The first one is triphenylene having a Z-pen formula and the second one is triphenylene with A-phe. Furthermore, these decorations are acquired as the result of map operations represented in the CVNET software, while its assembling is conducted with the help of the nano studio program. In the literature, its topology is discussed by Omega polynomials which is an applied graph theory topic. Another most applied topic of graph theory is known as the resolvability parameter. So this article studied the resolvability parameters of patched networks, such as metric dimension, and edge metric dimension. These parameters are defined as a resolving set is a subset of vertices of a graph with a condition that each vertex of that graph has a unique code or representation with respect to the chosen subset. Its minimum cardinality is known as metric dimension, while the edge metric dimension is defined by the minimum count of members in the edge resolving set and this set is defined as according to a chosen subset each edge of a graph has unique representations, then this set is known as edge resolving set. A resolving set is a subset of vertices of a graph with a condition that each edge of that graph has a unique code or representation with respect to the chosen subset. It is minimum cardinality is known as the edge metric dimension.https://ieeexplore.ieee.org/document/10012362/Patched networkp-type networkmetric dimensionedge metric dimensionresolving setchemical graph
spellingShingle Sidra Bukhari
Muhammad Kamran Jamil
Muhammad Azeem
Senesie Swaray
Patched Network and Its Vertex-Edge Metric-Based Dimension
IEEE Access
Patched network
p-type network
metric dimension
edge metric dimension
resolving set
chemical graph
title Patched Network and Its Vertex-Edge Metric-Based Dimension
title_full Patched Network and Its Vertex-Edge Metric-Based Dimension
title_fullStr Patched Network and Its Vertex-Edge Metric-Based Dimension
title_full_unstemmed Patched Network and Its Vertex-Edge Metric-Based Dimension
title_short Patched Network and Its Vertex-Edge Metric-Based Dimension
title_sort patched network and its vertex edge metric based dimension
topic Patched network
p-type network
metric dimension
edge metric dimension
resolving set
chemical graph
url https://ieeexplore.ieee.org/document/10012362/
work_keys_str_mv AT sidrabukhari patchednetworkanditsvertexedgemetricbaseddimension
AT muhammadkamranjamil patchednetworkanditsvertexedgemetricbaseddimension
AT muhammadazeem patchednetworkanditsvertexedgemetricbaseddimension
AT senesieswaray patchednetworkanditsvertexedgemetricbaseddimension