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The design predicts that a significant reduction in spurious frequency components from a switching RF mixer can be realized using a device that is less than 17 nm thick.
This design predicts that i) reporter expression occurs from the promoters of active genes targeted by the integrants ("trapping"), and ii) Dox withdrawal results in tTRKRAB binding to the TetO sites present in the provirus, thus exposing the trapped promoters to KRAB/KAP1-mediated silencing ("silencing").
In the absence of selection and errors, the breeding design predicts that the captured genetic variation will be randomly distributed among the CC lines with each line being independent (i.e., CC lines do not share recombination events and local founder contributions).
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Simulation results for the analyzer design predict that it will have a relative energy resolution of 0.025% for an entrance angular spread of ±6°, around an order of magnitude better then the well-known Cylindrical Mirror Analyzer (CMA).
The study design predicted that 640 households would be visited, but some of the selected segments contained less than 4 inhabited homes; thus data were collected for 610 households only.
The experimental design predicted that growing MITGM-173 cells in a defined medium with a C/N ratio of 14.7 containing 96.0 g L−1 glycerol and 6.55 g L−1 (NH4)2SO4 would result in a maximal TAG production of 13.8 g L−1 as fatty acids.
Both test designs predicted that D. semipunctata is within the ecological host range of the two parasitoid species, whereas field evidence suggests this is a false positive result.
The selection hypothesis predicts that gene compactness is predominantly driven by the level of expression, whereas the genomic design hypothesis predicts that expression breadth across tissues is the driving force.
Our theoretical design further predicts that associations between the characteristics of occupational environments and vocational performance are mediated by the more fundamental motivational qualities of learners' vocational and workplace identities (see Figure 3).
The genomic design hypothesis predicts that additional regulatory sequence elements required by tissue-specific genes will lead to an increase in their overall length.
It should be noted that optimal design theory predicts that an increase of variances in random effect may deteriorate the precision of parameter estimates and the power of the Wald test.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com