Maximizing the number of cliques in Kr+1-free graphs with forbidden properties
Aleyah Dawkins, Rachel Kirsch
Abstract
Ferrero and Lesniak in 2018 found the maximum numbers of edges in r-partite non-Hamiltonian graphs. Recently we found the maximum numbers of edges and t-cliques in Kr+1-free graphs (1) that are not Hamiltonian or (2) that satisfy a condition on low-degree vertices related to Pósa's theorem. Applying theorem (2), here we extend theorem (1) from Hamiltonicity to other properties. We determine the maximum numbers of edges and t-cliques in Kr+1-free graphs that avoid one of the following properties: traceability, Hamiltonian-connectedness, k-path Hamiltonicity, k-Hamiltonicity, k-Hamiltonian-connectedness, and k-connectedness. We find all extremal graphs having the maximum numbers of edges. On the way, we prove upper bounds on the numbers of edges and t-cliques in Kr+1-free graphs that avoid an arbitrary stable property that holds for sufficiently large complete graphs.
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