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We study squares of planar graphs with the aim to determine their list chromatic number. We present new upper bounds for the square of a planar graph with maximum degree $\Delta \leq 4$. In particular $G^2$ is 5-, 6-, 7-, 8-, 12-,…

组合数学 · 数学 2015-08-06 Daniel W. Cranston , Rok Erman , Riste Škrekovski

Xu and Wu proved that if every 5-cycle of a planar graph G is not simultaneously adjacent to 3-cycles and 4-cycles, then G is 4-choosable. In this paper, we improve this result as follows. If G is a planar graph without pairwise adjacent…

组合数学 · 数学 2019-01-03 Pongpat Sittitrai , Kittikorn Nakprasit

This paper studies the choosability of signed planar graphs. We prove that every signed planar graph is 5-choosable and that there is a signed planar graph which is not 4-choosable while the unsigned graph is 4-choosable. For each $k \in…

组合数学 · 数学 2017-02-27 Ligang Jin , Yingli Kang , Eckhard Steffen

Xu and Wu proved that if every $5$-cycle of a planar graph $G$ is not simultaneously adjacent to $3$-cycles and $4$-cycles, then $G$ is $4$-choosable. In this paper, we improve this result as follows. Let $\{i, j, k, l\} = \{3,4,5,6\}.$ For…

组合数学 · 数学 2017-09-15 Pongpat Sittitrai , Kittikorn Nakprasit

Hakimi and Schmeichel determined a sharp lower bound for the number of cycles of length 4 in a maximal planar graph with $n$ vertices, $n\geq 5$. It has been shown that the bound is sharp for $n = 5,12$ and $n\geq 14$ vertices. However, the…

组合数学 · 数学 2023-06-08 Ervin Győri , Addisu Paulos , Oscar Zamora

For a set of nonnegative integers $c_1, \ldots, c_k$, a $(c_1, c_2,\ldots, c_k)$-coloring of a graph $G$ is a partition of $V(G)$ into $V_1, \ldots, V_k$ such that for every $i$, $1\le i\le k, G[V_i]$ has maximum degree at most $c_i$. We…

组合数学 · 数学 2018-06-21 Heather Hoskins , Runrun Liu , Jennifer Vandenbussche , Gexin Yu

Consider two conditions on a graph: (1) each 5-cycle is not a subgraph of 5-wheel and does not share exactly one edge with 3-cycle, and (2) each 5-cycle is not adjacent to two 3-cycles and is not adjacent to a 4-cycle with chord. We show…

组合数学 · 数学 2017-06-19 Pongpat Sittitrai , Kittikorn Nakprasit

We prove a conjecture of Dvo\v{r}\'ak, Kr\'al, Nejedl\'y, and \v{S}krekovski that planar graphs of girth at least five are square $(\Delta+2)$-colorable for large enough $\Delta$. In fact, we prove the stronger statement that such graphs…

组合数学 · 数学 2019-11-18 Marthe Bonamy , Daniel W. Cranston , Luke Postle

Let $G$ be a planar graph without 4-cycles and 5-cycles and with maximum degree $\Delta\ge 32$. We prove that $\chi_{\ell}(G^2)\le \Delta+3$. For arbitrarily large maximum degree $\Delta$, there exist planar graphs $G_{\Delta}$ of girth 6…

组合数学 · 数学 2017-06-14 Daniel W. Cranston , Bobby Jaeger

Deciding whether a planar graph (even of maximum degree $4$) is $3$-colorable is NP-complete. Determining subclasses of planar graphs being $3$-colorable has a long history, but since Gr\"{o}tzsch's result that triangle-free planar graphs…

组合数学 · 数学 2020-05-15 François Dross , Borut Lužar , Mária Maceková , Roman Soták

We give a new proof of the fact that every planar graph is 5-choosable, and use it to show that every graph drawn in the plane so that the distance between every pair of crossings is at least 15 is 5-choosable. At the same time we may allow…

组合数学 · 数学 2016-12-16 Zdenek Dvorak , Bernard Lidicky , Bojan Mohar

All planar graphs are 4-colorable and 5-choosable, while some planar graphs are not 4-choosable. Determining which properties guarantee that a planar graph can be colored using lists of size four has received significant attention. In terms…

Wang and Lih in 2002 conjectured that every planar graph without adjacent triangles is 4-choosable. In this paper, we prove that every planar graph without any 4-cycle adjacent to two triangles is DP-4-colorable, which improves the results…

组合数学 · 数学 2018-04-25 Runrun Liu , Xiangwen Li

The \textit{square} of a graph $G$, denoted by $G^2$, is obtained from $G$ by adding an edge to connect every pair of vertices with a common neighbor in $G$. In this paper we prove that for every planar graph $G$ with maximum degree at most…

组合数学 · 数学 2023-08-15 Jiani Zou , Miaomiao Han , Hong-Jian Lai

In this paper, we prove that planar graphs without cycles of length 4, 6, 9 are 3-colorable.

组合数学 · 数学 2017-02-27 Yingli Kang , Ligang Jin , Yingqian Wang

We study choosability with separation which is a constrained version of list coloring of graphs. A (k,d)-list assignment L on a graph G is a function that assigns to each vertex v a list L(v) of at least k colors and for any adjacent pair…

组合数学 · 数学 2016-12-16 Ilkyoo Choi , Bernard Lidický , Derrick Stolee

We prove that an inseparable graph can have any positive number of cycles with the six exceptions 2, 4, 5, 8, 9, 16, and that an inseparable cubic graph has the additional exceptions 1 and 13. The exceptions for simple inseparable cubic…

组合数学 · 数学 2025-12-01 Ryan McCulloch , Brendan D. McKay , Alireza Salahshoori , Thomas Zaslavsky

We show that every planar, 4-connected, K2;5-minor- free graph is the square of a cycle of even length at least six.

组合数学 · 数学 2015-08-24 Emily Abernethy Marshall , Liana Yepremyan , Zach Gaslowitz

It is known that every loopless cubic graph is 4-edge choosable. We prove the following strengthened result. Let G be a planar cubic graph having b cut-edges. There exists a set F of at most 5b/2 edges of G with the following property. For…

组合数学 · 数学 2012-10-31 Luis Goddyn , Andrea Spencer

This paper proves that every planar graph without cycles of length 4, 7, or 9 is DP-3-colorable.

组合数学 · 数学 2023-03-09 Yingli Kang , Ligang Jin , Xuding Zhu
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