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Strong consistency can be achieved when data is manipulated by an individual (or single) operation.
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Previous studies [18] suggest that better quantification of 177Lu activity is achieved when data from the PW208 is used for image reconstruction.
The model rests on a mathematical definition of the requirements for linear measurement, which is achieved when data accord with model specifications.
This study suggests that even when the most stably expressed genes in array experiments are used as endogenous reference, significant variation in test gene expression estimates may occur and the best normalization is achieved when data from several endogenous reference genes are pooled together to minimize minimal but significant variation among samples.
In particular, this study suggests that even when the most stably expressed genes in array experiments are used as endogenous reference genes, significant variation in test gene expression estimates may occur and the best normalization is achieved when data from several endogenous reference genes are pooled together to minimize minimal but significant variation among samples.
Model simulations suggest that climate and remote sensing results are complementary and that the best distribution patterns can be achieved when the two data sets are combined.
Although a complete picture can only be achieved when the chromatographic data are integrated with those obtained by elemental analysis and vibrational spectroscopies, as in [26], thanks to the chromatographic analysis, specific recipes to obtain selected hues were hypothesised for several samples, namely to obtain garancine and Kopp's purpurin.
Various benefits can be achieved when these "Omics" data are integrated, such as the identification of unknown gene functions or the elucidation of regulatory networks of whole organisms.
This can be achieved when enough structural data is available (by selecting the alignment supporting the best structural superposition), or when functional information is at hand (by evaluating the alignment of similar features, such as catalytic residues).
Adding records incrementally is also possible, although we have not incorporated this into our current production system, an addition rate of ~ 100,000 records per minute can be achieved when adding new data to an existing database.
Van Binsbergen et al. [ 28] and Pausch et al. [ 29] showed that a reasonable accuracy of imputation (e.g. correlation between observed and imputed genotypes as high as 0.83) could be achieved when imputing from SNP array data to whole-genome sequencing data in dairy cattle breeds.
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