Sentence examples for statistic charts from inspiring English sources

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The thicknesses of the SiO x films and (SiO x /SiO y ) junctions as a function of the growth temperature (Tg) are shown in Figure 1 as box statistic charts, where the mean, maximum, and minimum values are shown, the width of the box denotes the standard deviation of the measurements.

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Last season, when Jeremy Lin's ascendence highlighted an unselfish but ultimately temporary offense, the Knicks still ranked 20th in assists at 20.1 a game and 22nd in assist percentage, a statistic that charts the percentage of field goals generated by assists.

The Durbin-Watson Statistic and autocorrelation charts were used to assess the assumption of independence and lack of higher order autocorrelation lagged up to 24 months in model residuals.

For etch run(s), Step 1: Plot W-Hotelling (W-MEWMA) statistic in a chart.

The average time from taking a sample to the time of plotting T i 2 statistic on the chart.

Therefore, the chart statistic denotes by MEWMA j is given by MEWMA j = z j ' ∑ Z − 1 z j, Open image in new window (11).

The aim of the study was to propose such a control charting statistic that give a specific weight to the current sample and the remaining weight is equally distributed among the previous samples.

The use of the models allows at each sampling epoch the determination of the scheme parameters that minimize the quality-related expected cost of the procedure based on the actual value of the chart statistic.

For wavelet-SD approximation: begin{aligned} T_{i}^2=Z_{i}^Sigma _{Z_i}^{-1}Z_{i} end{aligned} (31 where (Z_i) is the statistic of EWMA chart expressed by: begin{aligned} Z_i= lambda X_i + (1-lambda )Z_{i-1} end{aligned} (32 where smoothing parameter is noted by (lambda).

For wavelet-CV approximation: begin{aligned} T_{i}^2sub=Z_{i}^Sigma _{Z_i}^{-1}Z_{i} end{aligned} (33 where (Z_i) is the statistic of EWMA chart expressed by: begin{aligned} Z_i= lambda X_i + (1-lambda )Z_{i-1} end{aligned} (34 where smoothing parameter is noted by (lambda).

T 3 is given by T 3 = h · ARL out - t + n ′ · G (8 where G is the average time from taking a sample to the time of plotting T i 2 statistic on the chart, and n ′ is the average sample size when the process operates in out-of-control state, and ARL out is the average number of samples drawn from process when it is out of control.

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