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Among various performance measures, variance is the most basic one for unbiased estimators.
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We corrected these measurements by replacing ones where the measured variance is below the value of the variance observed in technical replicates with that value.
Measurements made with less than a mean of 30 reads in the two replicates were discarded on the assumption that they were unreliable due to the fact that more than 20% of their measured variance is Poisson noise.
Data are presented as averages, but no measures of variance are provided and there is not a single statistical analysis.
*Indicates that mean values were derived from this source but measures of variance were not reported.
When measures of variance were not available from the original report, it was our intention to derive these from p-values.
Phase noise measurements of an optoelectronic oscillator (OEO) at frequencies less than 10 Ha from the carrier (10.6 GHz) as well as the measured Allan variance are presented for the first time.
However, as no measure of variance was provided for these outcomes, these data were not able to be included in this meta-analysis.
A repeated measures analysis of variance was used to measure the differences between the two groups of students.
Repeated measures variance analysis was used to evaluate any statistically significant difference in repeated measurements in the groups.
In some cases the mixed models algorithm could not converge, so a standard repeated measures analysis of variance was performed.
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CEO of Professional Science Editing for Scientists @ prosciediting.com