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The method developed gives detection limits in the 0.020 0.080 μg L−1 range (0.1 0.4 μg L−1 range for undiluted blood samples) with appropriate repeatability values (RS D< 15% at high level and <23% at LOQ level).
However, the method developed gives only relative estimation of the binding affinities of the metabolites formed.
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The method that we have developed gives us the opportunity to place the genetic association into a functional context, which might help us understand the underlying mechanisms and complex interplay between multiple factors contributing to disease pathogenesis.
This method essentially estimates how unemployment developed given pre-crisis Beveridge curve data and therefore gives an indication of deviations of unemployment from the pre-crisis Beveridge curve.
New methods to analyse the models were developed giving new insights into the shortcomings of the correlations to predict and define the packing structure, as well as to simulate the effective thermal conductivity in the near-wall region.
The results support the use of Eurocode 3 criterion instead of ISO, and this is confirmed by the analysis of a varied set of welded layouts using the former in a general numerical method developed previously, which gives results that show a very reasonable agreement with experimental results found in the bibliography.
The benefits of SSR SR are relatively small under ideal conditions but the design method developed here can give a good starting point for designing SSR SR processes under non-ideal conditions.
Although the methods developed here give wide-ranging estimates of the numbers infected during each episode, they nevertheless highlight the need to focus on the extent of infection spread in the event of future VDPV episodes.
The numerical method developed in this research gives results good enough for application to the initial design stage.
The examples show that the method developed in this paper can give consideration to both the reliability demand and the economic aspect of a structure.
Using a model-independent method developed to measure the efficiency given the presence of resonant behaviour in the three-pion system, the ratio of the branching fractions B-c -> J/psi pipipi/B B-c -> J/pipipi/B B-casured to be 2.55 +/- 0.80 (stat) +/- 0.33 (syst)(-0.01)(+0.04) (tau(Bc)), consistent with the previous LHCb result.
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