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Titlebook: Computing and Combinatorics; 16th Annual Internat My T. Thai,Sartaj Sahni Conference proceedings 2010 Springer-Verlag Berlin Heidelberg 201

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Concepts of stability analysis,ithm with round complexity .(Δ), where Δ is the maximal degree of ., improving the previous 3-approximation result with the same round complexity .(Δ). For the weighted case, we give a 4-approximation algorithm with round complexity .(Δ).
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Concepts of stability analysis,planar subgraph of a single-source embedded digraph is NP-complete. We then give a new characterization of upward planar single-source digraphs. We use this characterization to present an algorithm that computes a maximum upward planar single-source subgraph of a single-source embedded DAG. This alg
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Convection in cylindrical geometry,ed in a fixed order. We examine how fast this “deterministic random walk” covers all vertices (or all edges). We present general techniques to derive upper bounds for the vertex and edge cover time and derive matching lower bounds for several important graph classes. Depending on the topology, the d
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Convection in cylindrical geometry,Kanj and Xia and ..(1.1864.) by Razgon. In this paper, we will present a new way to analyze algorithms for the problem. We use . to measure the size of the search tree, and then get a simple .-time algorithm, where .. is the number of vertices with degree ≥ 2 in the graph. Combining this result with
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The Curse of Connectivity: ,-Total Vertex (Edge) Coverly .-. and .-.. Specifically, we impose the additional requirement that each connected component of a solution have at least . vertices (resp. edges from the solution), and call the problem .-. (resp. .-.). We show that
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Approximated Distributed Minimum Vertex Cover Algorithms for Bounded Degree Graphsithm with round complexity .(Δ), where Δ is the maximal degree of ., improving the previous 3-approximation result with the same round complexity .(Δ). For the weighted case, we give a 4-approximation algorithm with round complexity .(Δ).
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