An article in Technometrics (1999, Vol. 41. pp. 202-211) studied the capability of a gauge by measuring the weight of paper. The data for repeated measurements of one sheet of paper are in the following table. Construct a 99% one-sided, upper confidence interval for the standard deviation of these measurements. Assume population is approximately normally distributed. Round your answer to 3 decimal places. Observations 3.481 3.477 3.470 3.448 3.472 3.470 3.485 3.464 3.477 3.475 3.472 3.473 3.472 3.470 3.474

A First Course in Probability (10th Edition)
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Please use the accompanying Excel data set or accompanying Text file data set when completing the following exercise.
An article in Technometrics (1999. Vol. 41. pp. 202-211) studied the capability of a gauge by measuring the weight of paper. The data
for repeated measurements of one sheet of paper are in the following table. Construct a 99% one-sided, upper confidence interval for
the standard deviation of these measurements. Assume population is approximately normally distributed.
Round your answer to 3 decimal places.
Observations
3.481
3.477
3.470
os
3.448
3.472
3.470
3.485
3,464
3.477
3.475
3,472
3.473
3.472
3.470
3.474
Transcribed Image Text:Please use the accompanying Excel data set or accompanying Text file data set when completing the following exercise. An article in Technometrics (1999. Vol. 41. pp. 202-211) studied the capability of a gauge by measuring the weight of paper. The data for repeated measurements of one sheet of paper are in the following table. Construct a 99% one-sided, upper confidence interval for the standard deviation of these measurements. Assume population is approximately normally distributed. Round your answer to 3 decimal places. Observations 3.481 3.477 3.470 os 3.448 3.472 3.470 3.485 3,464 3.477 3.475 3,472 3.473 3.472 3.470 3.474
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