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<metadata xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns:dc="http://purl.org/dc/elements/1.1/"><dc:title>Total mutual-visibility in Hamming graphs</dc:title><dc:creator>Bujtás,	Csilla	(Avtor)
	</dc:creator><dc:creator>Klavžar,	Sandi	(Avtor)
	</dc:creator><dc:creator>Tian,	Jing	(Avtor)
	</dc:creator><dc:subject>mutual-visibility set</dc:subject><dc:subject>total mutual-visibility set</dc:subject><dc:subject>Hamming graphs</dc:subject><dc:subject>Turán-type problem</dc:subject><dc:description>If $G$ is a graph and $X\subseteq V(G)$, then $X$ is a total mutual-visibility set if every pair of vertices $x$ and $y$ of $G$ admits a shortest $x,y$-path $P$ with $V(P) \cap X \subseteq \{x,y\}$. The cardinality of a largest total mutual-visibility set of $G$ is the total mutual-visibility number $\mu_{\rm t}(G)$ of $G$. In this paper the total mutual-visibility number is studied on Hamming graphs, that is, Cartesian products of complete graphs. Different equivalent formulations for the problem are derived. The values $\mu_{\rm t}(K_{n_1}\,\square\, K_{n_2}\,\square\, K_{n_3})$ are determined. It is proved that $\mu_{\rm t}(K_{n_1} \,\square\, \cdots \,\square\, K_{n_r}) = O(N^{r-2})$▫, where $N = n_1+\cdots + n_r$, and that $\mu_{\rm t}(K_s^{\,\square\,, r}) = \Theta(s^{r-2})$ for every $r\ge 3$, where $K_s^{\,\square\,, r}$ denotes the Cartesian product of $r$ copies of $K_s$. The main theorems are also reformulated as Turán-type results on hypergraphs.</dc:description><dc:date>2025</dc:date><dc:date>2024-12-30 12:35:17</dc:date><dc:type>Neznano</dc:type><dc:identifier>21117</dc:identifier><dc:identifier>UDK: 519.17</dc:identifier><dc:identifier>ISSN pri članku: 1232-9274</dc:identifier><dc:identifier>DOI: 10.7494/OpMath.2025.45.1.63</dc:identifier><dc:identifier>COBISS_ID: 220652803</dc:identifier><dc:language>sl</dc:language></metadata>
