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In HMMER, the match state emission probabilities are computed by combining the frequency of the observed residues with prior data about the residue types based on a nine component Dirichlet mixture prior.
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This calculation was based on a two group Satterthwaite t-test at a one sided significance of α = 0.05.
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Welding parameters were optimized based on a five factors and four levels orthogonal experimental design.
We present a new partitioning of the processor data path based on a three level separation.
The proof is based on a two component material model introducing a scalar internal variable.
A theoretical investigation of plasmonic absorption and nanosensing based on a three dimensional nanostructure is presented.
A response surface analysis based on a five levels composite experimental design had been carried out.
Furthermore, an adaptively robust filter is designed based on a three segment function adjust factor.
A computational method based on a three scale analysis is presented.
The control scheme is based on a two nested loops structure.
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