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20122024
most citedReinforcement learning for graph theory, I. Reimplementation of Wagner's approach

1 citations · 2 across the 6 of their papers we have counts for

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math.CO20241 cited

Reinforcement learning for graph theory, I. Reimplementation of Wagner's approach

Mohammad Ghebleh, Salem Al-Yakoob, Ali Kanso +1

We reimplement here the recent approach of Adam Zsolt Wagner [arXiv:2104.14516], which applies reinforcement learning to construct (counter)examples in graph theory, in order to ma…

math.CO2024

Reinforcement learning for graph theory, II. Small Ramsey numbers

Mohammad Ghebleh, Salem Al-Yakoob, Ali Kanso +1

We describe here how the recent Wagner's approach for applying reinforcement learning to construct examples in graph theory can be used in the search for critical graphs for small…

math.CO2024

On the Second-Order Wiener Ratios of Iterated Line Graphs

Mohammad Ghebleh, Ali Kanso

The Wiener index W(G) of a graph G is the sum of distances between all unordered pairs of its vertices. Dobrynin and Mel'nikov [in: Distance in Molecular Graphs - Theory, 2012, p.…

math.CO20241 cited

Searching for regular, triangle-distinct graphs

Dragan Stevanović, Mohammad Ghebleh, Gilles Caporossi +2

The triangle-degree of a vertex v of a simple graph G is the number of triangles in G that contain v. A simple graph is triangle-distinct if all its vertices have distinct triangle…

math.CO2013

Totally Silver Graphs

M. Ghebleh, E. S. Mahmoodian

A totally silver coloring of a graph G is a k--coloring of G such that for every vertex v \in V(G), each color appears exactly once on N[v], the closed neighborhood of v. A totally…

math.CO2012

Locating and Identifying Codes in Circulant Networks

M. Ghebleh, L. Niepel

A set S of vertices of a graph G is a dominating set of G if every vertex u of G is either in S or it has a neighbour in S. In other words, S is dominating if the sets S\cap N[u] w…