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The effects of sample size, age of adjustment factors, and the sampling time on the accuracy of the estimates were studied.
The effects of the number and the time step of measurements, errors involved in the initial concentration data in the building material, random errors involved in the measured VOCs concentration data in the chamber air and errors involved in the calculation of the mean convective mass transfer coefficient on the accuracy of estimates were studied.
Treatment (tariquidar-treated or tariquidar-untreated) and rat group (control or 48-h post SE) were defined as covariates (Efftariquidar and EffSE) and their effects on the parameter estimates were studied.
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Moreover, the LPFT can be used as an instantaneous frequency estimator, and the corresponding asymptotic covariance matrix and bias of the estimates are studied in [3].
The uncertainties of the different estimates are studied by a bootstrap analysis.
The accuracy of parameter estimates is studied as a function of sample size.
The effect of the down-sampling on the estimates was studied.
Here, the accuracy of the MML estimate is studied in detail.
Finally, the tradeoff between the number of degrees of freedom and the accuracy of the estimate is studied.
For biharmonic equation, the a priori/a posteriori error estimate was studied in [3 6] and the convergence and optimality of the adaptive Morley element method was proved in [7, 8].
Then, for the same numbers of objects classified twice, the influence of different patterns of marginal heterogeneity within reader on power estimate was studied.
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