On the Embeddings of the Semi-Strong Product Graph
Over the years, a lot has been written about the three more common graph products (Cartesian product, Direct product and the Strong product), as all three of these are commutative products. This thesis investigates a non-commutative product graph, H, G, we call the Semi-Strong graph product, also re...
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ndltd-vcu.edu-oai-scholarscompass.vcu.edu-etd-49042017-03-17T08:28:28Z On the Embeddings of the Semi-Strong Product Graph Brooks, Eric B Over the years, a lot has been written about the three more common graph products (Cartesian product, Direct product and the Strong product), as all three of these are commutative products. This thesis investigates a non-commutative product graph, H, G, we call the Semi-Strong graph product, also referred in the literature as the Augmented Tensor and/or the Strong Tensor. We will start by discussing its basic properties and then focus on embeddings where the second factor, G, is a regular graph. We will use permutation voltage graphs and their graph coverings to compute the minimum genus for several families of graphs. The results follow work started first by A T White [12], extended by Ghidewon Abay Asmerom [1],[2], and follows the lead of Pisanski [9]. The strategy we use starts with an embedding of a graph H and then modifying H creating a pseudograph H*. H* is a voltage graph whose covering is HxG. Given the graph product HxG, where G is a regular graph and H meets certain conditions, we will use the embedding of H to study topological properties, particularly the surface on which HxG is minimally embedded. 2015-01-01T08:00:00Z text application/pdf http://scholarscompass.vcu.edu/etd/3811 http://scholarscompass.vcu.edu/cgi/viewcontent.cgi?article=4904&context=etd © The Author Theses and Dissertations VCU Scholars Compass Physical Sciences and Mathematics |
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Physical Sciences and Mathematics |
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Physical Sciences and Mathematics Brooks, Eric B On the Embeddings of the Semi-Strong Product Graph |
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Over the years, a lot has been written about the three more common graph products (Cartesian product, Direct product and the Strong product), as all three of these are commutative products. This thesis investigates a non-commutative product graph, H, G, we call the Semi-Strong graph product, also referred in the literature as the Augmented Tensor and/or the Strong Tensor. We will start by discussing its basic properties and then focus on embeddings where the second factor, G, is a regular graph. We will use permutation voltage graphs and their graph coverings to compute the minimum genus for several families of graphs. The results follow work started first by A T White [12], extended by Ghidewon Abay Asmerom [1],[2], and follows the lead of Pisanski [9]. The strategy we use starts with an embedding of a graph H and then modifying H creating a pseudograph H*. H* is a voltage graph whose covering is HxG. Given the graph product HxG, where G is a regular graph and H meets certain conditions, we will use the embedding of H to study topological properties, particularly the surface on which HxG is minimally embedded. |
author |
Brooks, Eric B |
author_facet |
Brooks, Eric B |
author_sort |
Brooks, Eric B |
title |
On the Embeddings of the Semi-Strong Product Graph |
title_short |
On the Embeddings of the Semi-Strong Product Graph |
title_full |
On the Embeddings of the Semi-Strong Product Graph |
title_fullStr |
On the Embeddings of the Semi-Strong Product Graph |
title_full_unstemmed |
On the Embeddings of the Semi-Strong Product Graph |
title_sort |
on the embeddings of the semi-strong product graph |
publisher |
VCU Scholars Compass |
publishDate |
2015 |
url |
http://scholarscompass.vcu.edu/etd/3811 http://scholarscompass.vcu.edu/cgi/viewcontent.cgi?article=4904&context=etd |
work_keys_str_mv |
AT brooksericb ontheembeddingsofthesemistrongproductgraph |
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1718428577274265600 |