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h L 2 provides an upper bound for r L 2, the performance of linear prediction models based on common SNPs.
The impact of the spacer length at the source (Ls) and drain (Ld) on the performance of symmetrical lightly-doped double-gate (DG) MOSFET with gate length L = 20 nm is analyzed, with the type and doping concentration of the spacers kept the same as in the channel material.
In contrast, Figure 16 shows the impact of L on the performance of our algorithm.
If L < K, the rank of Y is equal to L and the performance of algorithm degrades.
The posterior probability that a given contig is W-specific is then: (1) P (C ∈ W | X, L ) = P (C ∈ W ) P (X | C ∈ W, L ) P (X | C ∈ W, L ) + P (X | C ∈ n o n W, L ) We assessed the performance of our test using Receiver Operating Characteristic (ROC) curves.
We constructed a prototype detector with an active volume of 69 l to demonstrate the performance of the proposed detector for high-energy gamma rays of around 50 MeV.
In the case of L = 1, the performance of cooperative OFDM/TDM and cooperative OFDM is the same since the channel becomes frequency nonselective.
The x-axis in Figure 6 represents L. When L was changed, the performance of DCS-SOMP was almost unchanged.
Finally, one can see that for average burst lengths L m >10, the performance of the LDBOGM, LDGM, and interleaving decrease significantly compared to one of the Reed-Solomon scheme.
L-SHADE improves the performance of SHADE with linearly reducing the population size in successive generations.
In a high concentration of cellulose (50 g/l), the performance of the spo0A mutant increased dramatically in terms of maximum growth, final concentrations of three major metabolic products, and cellulose catabolism.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com