The total interval number of a graph, III: Tree-like graphs

IF 1 3区 数学 Q3 MATHEMATICS, APPLIED
Thomas M. Kratzke , Douglas B. West
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引用次数: 0

Abstract

A multi-interval representation of a simple graph G assigns each vertex a union of disjoint real intervals so that vertices are adjacent if and only if their assigned sets intersect. The total interval number I(G) is the minimum of the total number of intervals used in such a representation of G. We present a linear-time algorithm to compute I(G) when every block of G is a complete graph or a cycle. We apply the algorithm to prove extremal results. For an n-vertex cactus (every block is an edge or a cycle), the maximum of I(G) is (18n12)/13. For an n-vertex block graph (every block is a complete graph), the maximum is 3n/22. In both extremal results there are a few small exceptions.
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来源期刊
Discrete Applied Mathematics
Discrete Applied Mathematics 数学-应用数学
CiteScore
2.30
自引率
9.10%
发文量
422
审稿时长
4.5 months
期刊介绍: The aim of Discrete Applied Mathematics is to bring together research papers in different areas of algorithmic and applicable discrete mathematics as well as applications of combinatorial mathematics to informatics and various areas of science and technology. Contributions presented to the journal can be research papers, short notes, surveys, and possibly research problems. The "Communications" section will be devoted to the fastest possible publication of recent research results that are checked and recommended for publication by a member of the Editorial Board. The journal will also publish a limited number of book announcements as well as proceedings of conferences. These proceedings will be fully refereed and adhere to the normal standards of the journal. Potential authors are advised to view the journal and the open calls-for-papers of special issues before submitting their manuscripts. Only high-quality, original work that is within the scope of the journal or the targeted special issue will be considered.
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