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This approximation is similar to the anomalous diffraction approximation but includes a description of phase functions.
Although this approximation is similar to that performed previously [ 6], their approach was uniquely based on the a posteriori qualitative use of the biological properties of amino acids to decide whether a coevolutionary pair was important biologically.
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The approximation is similar to the one that drives the phasing algorithm of IMPUTE version 2 (IMPUTE2; Howie et al. 2009), and we have implemented it in the same software package.
The approximation is similar in motivation to the concept of trimmed-likelihoods, where the likelihood is computed after trimming the least likely observations (Hadi and Luceno, 1997) or perhaps also to contamination models, where the influence of the outliers goes to zero.
These expressions and the underlying hierarchical approximation are similar to the model of clonal interference by Gerrish and Lenski (1998).
This observation can be rationalized within the current formulation of the sequence homology concept [ 1- 6]: SP/TM regions are essentially hydrophobic stretches that, in a first approximation, are similar to each other regardless of evolutionary origin due to functional pressures.
However, cleavages in the central domains lack any regularity and to a first approximation are similar at most positions, indicating that there is little or no consistent positioning of nucleosomes in these regions.
The assumptions made in our approximation are similar to those used in TIGAR, but the empirical comparisons herein show that our proposed method performs better in terms of computation time and required memory, while also providing improved accuracy on real and simulated data.
But this approximation is likely to be similar to the E-R pattern based on matched calculations.
PK profiles generated by MM approximations were similar to those obtained from the full TMDD model for both age groups.
Obviously, the ratio of the real to the imaginary part of the different impedance approximations was similar in the frequency range we observed.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com