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April 1, 1987SIAM Journal on Algebraic and Discrete Methods1,202 citations

Complexity of Finding Embeddings in a k-Tree

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SAStefan ArnborgDCDerek G. CorneilAPAndrzej Proskurowski

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Abstract

A k-tree is a graph that can be reduced to the k-complete graph by a sequence of removals of a degree k vertex with completely connected neighbors. We address the problem of determining whether a graph is a partial graph of a k-tree. This problem is motivated by the existence of polynomial time algorithms for many combinatorial problems on graphs when the graph is constrained to be a partial k-tree for fixed k. These algorithms have practical applications in areas such as reliability, concurrent broadcasting and evaluation of queries in a relational database system. We determine the complexity status of two problems related to finding the smallest number k such that a given graph is a partial k-tree. First, the corresponding decision problem is NP-complete. Second, for a fixed (predetermined) value of k, we present an algorithm with polynomially bounded (but exponential in k) worst case time complexity. Previously, this problem had only been solved for k = 1, 2, 3.

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Cite This Study

Arnborg et al. (1987) studied this question.

synapsesocial.com/papers/6a1d1c1b68a6eca4522f2feehttps://doi.org/10.1137/0608024
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