The partial results below are based on a sample of recently trained workers, to determine if the number of hours of training time received (X, in hours) has helped in improving the time taken to...


The partial results below are based on a sample of recently trained workers, to determine if the<br>number of hours of training time received (X, in hours) has helped in improving the time taken<br>to troubleshoot a process problem (Y, in minutes).<br>Summary Statistics<br>Variable<br>Mean<br>Variance Uncorrected SS Corrected SS (SSxx)<br>29<br>6.93 6.852217<br>1585 191.8621<br>Y<br>29<br>16.58621 25.39409<br>8689 711.0345<br>Parameter Estimates<br>Variable<br>Parameter Standard<br>Estimate<br>Error<br>Intercept<br>29.58501<br>0.61797<br>Training (X)<br>-1.87545<br>0.08359<br>Standard Error 1.15784<br>R-Square 0.9491<br>What is the upper limit of the 98% confidence interval estimate for the average time taken to<br>troubleshoot a process problem, of all workers with 415.8 minutes of trainirg time?<br>

Extracted text: The partial results below are based on a sample of recently trained workers, to determine if the number of hours of training time received (X, in hours) has helped in improving the time taken to troubleshoot a process problem (Y, in minutes). Summary Statistics Variable Mean Variance Uncorrected SS Corrected SS (SSxx) 29 6.93 6.852217 1585 191.8621 Y 29 16.58621 25.39409 8689 711.0345 Parameter Estimates Variable Parameter Standard Estimate Error Intercept 29.58501 0.61797 Training (X) -1.87545 0.08359 Standard Error 1.15784 R-Square 0.9491 What is the upper limit of the 98% confidence interval estimate for the average time taken to troubleshoot a process problem, of all workers with 415.8 minutes of trainirg time?

Jun 08, 2022
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