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We do make use of domain-specific semantics, but only to to determine a spanning tree through an existing graph rather than to construct that graph from a set of nodes.
Given an undirected graph with costs associated with each edge as well as each pair of edges, the quadratic minimum spanning tree problem (QMSTP) consists of determining a spanning tree of minimum cost.
We report on a fast, accurate and rugged analytical procedure to determine a wide span of perfluoroalkyl and polyfluoroalkyl substances (PFASs) in seabird plasma.
Although we cannot simply glean hierarchical information from function names, we can use a combination of compiler analysis and dynamic profile information to determine a reasonable spanning tree.
As an alternative, we propose an algorithm to determine a minimum-distance spanning tree (MST) based data gathering tree that is more energy-efficient and prolongs the node and network lifetimes as well as inflicts a lower coverage loss on the underlying network at any time instant, all of these at the cost frequent tree reconfigurations.
This allowed us to empirically determine that a span value equal to 0.04 was the optimum (Additional file 10).
The scientific view of what determines a life span or how a person ages has swung back and forth.
The employed receiving antenna separation and angle span determine a link distance of d=23 μm, yielding a wireless subsystem footprint (including the antennas) of ~48 × 14 μm2.
It uses a graph constructed on a hexagonal structure containing half of the image pixels in order to determine a forest of maximum spanning trees for connected component representing visual objects.
The third method design by us is an original visual feature-based algorithm that uses a graph constructed on a hexagonal structure (HS) containing half of the image pixels in order to determine a forest of maximum spanning trees for connected component representing visual objects.
One potential disadvantage of smoothing approaches can be difficulty determining an appropriate window span that balances overall smoothness with optimal feature identification.
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