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Results of the experiments have shown good agreement with the model predictions, indicating the applicability of the implicit model for modelling the response of axially unrestrained steel members.
Other traits exhibited less reliable but still clearly significant predictions, indicating the existence of subtle but robust trait-metabolite associations.
The largest MAE was produced by OK predictions, indicating the largest average prediction inaccuracy, with STOK and LSTOK producing more accurate predictions (14.8% and 18.3% smaller MAE, respectively).
Besides a few outliers, the experimental mutation rate for each gene was within the range of the simulation predictions, indicating the relevance of the CDS length as a prime determinant of gene mutation rates in this system.
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Model predictions indicate the potential sharpness of the fractionation that can be achieved with this method.
CALPHAD predictions indicate the tendency towards phase separation involving iron-cobalt and copper to partition out of the equiatomic solid solution to form the BCC and second FCC phase, respectively.
We note here that the resulting predictions indicate the association of TF and promoter DNA, which is the quantity being measured in ChIP-chip studies.
In silico predictions indicated the level of identity of M. leprae proteins with homologues in other mycobacteria and the presence of T cell and B cell epitopes.
FTIR prediction indicated the presence of possible polyphenol and protein encapsulates on the AgNPs.
Cis-element prediction indicated the presence of ABRE and other abiotic-stress-related elements.
Although the topology prediction indicated the SaSTT3 genes were the evolutionally conserved, the precise transmembrane structures of SaSTT3A and SaSTT3B still need a series of in vivo and in vitro topology mapping assays.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com