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Data transfer error is examined using analytical functions to compare schemes based on interpolation, area-weighted averaging, and L2 minimization.
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Both round-off and iterative convergence errors are discussed, and a posteriori methods for estimating the discretization error are examined.
Both the effects of the number of iterations as well as the effect of the level of a measurement error are examined.
The likelihood of making any subsequent error was examined.
In the "Analysis of the model" section, the interface width, sharp interface limit, and contact angle error are examined.
Patients who had a refractive error were examined with appropriate correction.
In a similar manner the relation between calcium level and measurement error was examined.
Bias in the resulting parameter estimates, 95% confidence intervals, power and type I error were examined.
In addition, 15 eyes of 15 normal individuals controlled by age and refractive error were examined by EDI-OCT.
Further, in Wang, Bradlow, Wainer and Muller, Type I error was examined in the absence of DIF items.
The collinearity of exposure error was examined based on Pearson correlations between daily exposure error for local local and regional regional pollutant pairs.
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CEO of Professional Science Editing for Scientists @ prosciediting.com