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Questions tagged [graph-drawing]

Problems related to graph drawing such as crossing numbers, layout designs, and intersection graphs.

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A 1-planar graph is a graph that can be drawn in the Euclidean plane in such a way that each edge has at most one crossing point. Barnette's conjecture states that every 3-connected cubic bipartite ...
Licheng Zhang's user avatar
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Suppose that we are given in the plane a set of $n$ points, $P$, and $m$ topological trees that pairwise intersect exactly once such that each leaf of each tree is from $P$. Is it true that $m\le n$? ...
domotorp's user avatar
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The Cartesian product of graphs $G$ and $H$ is a graph with vertex set $V(G\mathbin{\square} H)=V(G)×V (H)$, that is the set $\{(g,h)\mid g\in G, h\in H\}$. The edge set of $G\mathbin{\square}H$ ...
A.M's user avatar
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Two drawings are topologically isomorphic if one can be continuously deformed into the other. Whitney proved that a 3-connected planar graph has the unique planar drawing (up to topologically ...
Licheng Zhang's user avatar
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The local crossing number ${\rm LCR(G)}$ of a graph $G$ is defined as the least nonnegative integer $k$ such that the graph has a $k$-planar drawing. In other words, it is the smallest possible number ...
Xin Zhang's user avatar
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$\DeclareMathOperator{\box}{\operatorname{box}}$$\DeclareMathOperator{\cub}{\operatorname{cub}}$ This is a follow up and an extension of another question I asked recently. A box graph is a graph ...
Pranay Gorantla's user avatar
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A graph is said to be an interval graph if its vertices can be associated with (closed) intervals on the real line $\mathbb R$ and there is an edge between two vertices if and only if the ...
Pranay Gorantla's user avatar
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For me "Dessin d'Enfants" by Alexandre Grothendieck is the more concrete research work he has done. I would like to know if there are others. When he was teaching at Montpellier University (...
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1-planar graphs were first studied by Ringel (1965), who showed that they can be colored with at most seven colors. Later, the precise number of colors needed to color these graphs, in the worst case, ...
Licheng Zhang's user avatar
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So in terms of crossing number https://arxiv.org/pdf/1808.10480 gives a lower bound of $O(e^{2.5}/n^{1.5})$ for multigraphs with no face of length 2 with no node contained inside. What do we know ...
Hao S's user avatar
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Let $G$ be a graph embedded in the plane (with crossings). For $ F \subset E(G) $, denote by $c(F)$ the set of edges of $G$ that cross some edge in $F$. Denote $\delta(v)$ the set of edges with one ...
Hao S's user avatar
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Suppose $G$ is a graph embedded in the plane with $m=|E(G)|$ edges and $n=|V(G)|$ vertices. Suppose $\operatorname{sim}(G)$, the simplification of $G$ contains $ m' \gg 3n $ edges. Call the set of ...
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Given a nonplanar graph $G$ drawn in the plane with crossings. Does there exist a small ($o(|V(G)|$) subset $S$ of edges of $G$ such that after the removal of all edges that intersect or share an ...
Hao S's user avatar
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A graph is IC-planar if it admits a drawing in the plane with at most one crossing per edge and such that two pairs of crossing edges share no common end vertex. A graph $G$ is maximal in a graph ...
Licheng Zhang's user avatar
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The concept of planar graphs seems to be standard (I'm also not sure who first used this term), and recently, beyond planar graphs attract a lot of interest in the field of graph drawing. I know that ...
Licheng Zhang's user avatar
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A toroidal graph is a graph that can be embedded on a torus. In other words, the graph's vertices can be placed on a torus such that no edges cross. A minor of graph G is a graph obtained from G by ...
Xin Zhang's user avatar
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Graph $G$ can be embedded (or has an embedding) in the space if $G$ can be drawn in the space if $G$ can be drawn in such a way that no two edges cross except at an end-vertex in common. A Graph $G$ ...
Licheng Zhang's user avatar
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In the following paper, Hudák Dávid, and Tomáš Madaras give the following Theorem 1.1. Hudák, Dávid, and Tomáš Madaras. "On local properties of 1-planar graphs with high minimum degree." ...
Licheng Zhang's user avatar
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A $1$-planar graph is a graph which has a drawing on the plane such that each edge has at most one crossing. I used nauty to generate all 3-regular graphs up to ...
Licheng Zhang's user avatar
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From the Wikipedia entry on Tutte 12-cage , it is stated that the crossing number of Tutte 12-cage is 170, but the cited references do not seem to provide sufficient explanation for this. Exoo, G. &...
Licheng Zhang's user avatar
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It is well known that every maximal planar graph with at least 4 vertices is 3-connected. But for maximal 1-planar graphs we cannot ensure the high connectivity. (See is-there-any-maximal-1-planar-or-...
Licheng Zhang's user avatar
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A graph is 1-planar if it can be drawn on the plane such that each edge is crossed at most once. Let $G$ be a 1-planar bipartite graph with $n~(n > 4)$ vertices and $m$ edges. Karpov [1] showed ...
Licheng Zhang's user avatar
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A graph is $k$-planar if it can be drawn on the plane such that each edge is crossed at most $k$ times. A graph together with a $k$-planar drawing is a $k$-plane graph. Hence, by definition, $0$-...
Licheng Zhang's user avatar
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A $k$-planar graph is a graph which can be embedded with at most $k$ crossings per edge. It is proved that a complete graph $K_n$ is 2-planar if and only if $n\le 7$. Angelini P., Bekos M. A., ...
Licheng Zhang's user avatar
9 votes
3 answers
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A graph is 1-planar is it has drawing in the plane so that each edge is crossed at most once. Here we also assume the drawing satisfies (1) no edge is self-crossed; (2) no two adjacent edges are ...
W. Paul Liu's user avatar
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The line graph of an undirected graph $G$ is another graph $L(G)$ that represents the adjacencies between edges of $G$. $L(G)$ is constructed in the following way: for each edge in $G$, make a vertex ...
Licheng Zhang's user avatar
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This question is inspired by a similar MSE question about partition lattices. Question: Which finite Boolean lattices have a symmetric drawing on the 2D plane? By a symmetric drawing of a lattice, I ...
Jukka Kohonen's user avatar
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Sometimes I look at all non-isomorphic good drawings of graphs on a plane or sphere. Good drawing means that no edge crosses itself, no two edges cross more than once, and no two edges incident with ...
Licheng Zhang's user avatar
3 votes
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A 1-planar graph is a graph that can be drawn in the Euclidean plane in such a way that each edge has at most one crossing point, where it crosses a single additional edge. 1 planar graph I read the ...
Licheng Zhang's user avatar
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In graph drawing and geometric graph theory, a Tutte embedding of a simple 3-vertex-connected planar graph is a crossing-free straight-line embedding with the properties that the outer face is a ...
Licheng Zhang's user avatar
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1. Some background knowledge Definition. A torus, informally, is the doughnut-shaped surface that we get by taking a square made out of some arbitrarily-stretchy material and gluing together opposite ...
Licheng Zhang's user avatar
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1 answer
168 views

1-planar graphs are those can be drawn in the plane so that there is at most one crossing per edge. We know that the maximum number of edges of an $n$-vertex 1-planar graph is at most $4n-8$, and the ...
Xin Zhang's user avatar
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4 votes
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Suppose we are given a regular dodecahedron. Then we add five crossed edges inside each of its faces (actually, inside each face it is a copy of $K_5$). It is clear that this drawing has 60 crossings. ...
Xin Zhang's user avatar
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Suppose we are given a cube and we add a pair of crossing edges inside each of its faces. It is clear that this drawing has 6 crossings. My question is whether such a graph has crossing number 6? How ...
Xin Zhang's user avatar
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5 votes
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295 views

Is there a plane graph such that (1) the outer face has degree 3, i.e, is a triangle, (2) every inner face has degree 5, and (3) any two degree 5 faces share at most one commong edge.
Xin Zhang's user avatar
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3 votes
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The crossing number $cr(G)$ of a graph $G$ is the lowest number of edge crossings of a plane drawing of the graph $G$. The local crossing number of a drawing of a graph is the largest number of ...
Xin Zhang's user avatar
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7 votes
2 answers
348 views

Is there any characterization on the set of integers $n$ such that there is a 3-connected 5-regular simple $n$-vertex planar graph?
Xin Zhang's user avatar
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6 votes
2 answers
414 views

A graph is $k$-planar if it can be drawn in the plane so that each edge is crossed at most $k$ times. A $k$-planar graph $G$ is maximal if $G+uv$ is not $k$-planar for any non-adjacent vertices $u,v\...
Xin Zhang's user avatar
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1 vote
1 answer
130 views

Given a vertex $u$ (of bounded degree $k$) and another vertex $v$ in a planar graph $G$, what is the smallest number of "curves" in the plane drawn from $u$ to $v$ such that no $u$--$v$ path in $G$ ...
Hao S's user avatar
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10 votes
2 answers
722 views

The Tutte embedding is a way to create a "nice" drawing of a 3-connected planar graph in the plane, after having chosen an outer face. Is there a similar method to draw such a graph on a sphere? ...
Szabolcs Horvát's user avatar
5 votes
2 answers
653 views

A 2-connected $3$-connected graph $G$ is "Almost Planar" Locally Nonplanar if it has a a $2$-connected spanning subgraph $H$ and an embedding in the plane such that $H$ is planar in this embedding and ...
hbm's user avatar
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7 votes
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It is a notorious open problem to find a smallest set of $N$ points that permit any $n$-vertex planar graph to be drawn in the plane without crossings, using only those $N$ points as vertices, and ...
Joseph O'Rourke's user avatar
3 votes
2 answers
182 views

Is there anything known about the maximum number of simple-polygonal Hamilton cycles that a straight-line drawing of a Hamiltonian graph can have? Put differently, if the vertices of a Hamilton ...
Manfred Weis's user avatar
5 votes
2 answers
517 views

This question concerns a method of drawing graphs and a graph characteristic about which I want to learn more. Consider a connected directed graph with at least one node with in-degree 0 and one node ...
Hans-Peter Stricker's user avatar
5 votes
1 answer
511 views

Consider a graph $G$ with at least two unavoidable crossings, say, the disjoint union of two copies of $K_5$. Can such a graph always be drawn so that there is only one singular point (where all ...
Hauke Reddmann's user avatar
6 votes
0 answers
297 views

I'm looking at embeddings of the Heawood graph in the plane as unit distance graph. Apparently the first such embedding was given by Gerbracht, 2009 and has algebraic (over the rationals) coordinates ...
Moritz Firsching's user avatar
4 votes
1 answer
442 views

A common point of two edges in a graph drawing that is not an incident vertex is called a crossing. The crossing number $cr(G)$ is defined to be the minimum number of crossings in any drawing of $G$....
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12 votes
3 answers
2k views

Consider a circular drawing of a simple (in particular, loopless) graph $G$ in which edges are drawn as straight lines inside the circle. The crossing graph for such a drawing is the simple graph ...
Marco Kuhlmann's user avatar
10 votes
2 answers
834 views

A $1$-planar graph can be drawn in the plane so that each arc is crossed at most once by another arc. A $k$-planar graph can be drawn so that each arc is crossed at most $k$ times. Planar graphs are ...
Joseph O'Rourke's user avatar
1 vote
1 answer
261 views

Using Euler's formula ($V-E+F = 2$ where $V$, $E$ and $F$ are the number of vertices, edges and faces), we can easily count the number of edges in maximal graphs that are embeddable in plane: 3n-6. I ...
Hooman's user avatar
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