3. Final: A filling process is supposed to fill jars with 16 ounces of grape jelly. Specifications state that each jar must contain between 15.95 ounces and 16.05 ounces. A jar is selected from the process every half hour until a sample of 100 jars is obtained. When the fills of the jars are measured, it is found that x (xbar) = 16.0024 and s = .02454. Using x (xbar) and s as point estimates of u (meu) and o (sigma), estimate the probability that a randomly selected jar will have a fill, x, and that is out of specification. Assume that the process is in control and that the population of all jar fills is normally distributed. O a. .0428 O b.0391 O c.0129 O d. None of the above O e.0527
3. Final: A filling process is supposed to fill jars with 16 ounces of grape jelly. Specifications state that each jar must contain between 15.95 ounces and 16.05 ounces. A jar is selected from the process every half hour until a sample of 100 jars is obtained. When the fills of the jars are measured, it is found that x (xbar) = 16.0024 and s = .02454. Using x (xbar) and s as point estimates of u (meu) and o (sigma), estimate the probability that a randomly selected jar will have a fill, x, and that is out of specification. Assume that the process is in control and that the population of all jar fills is normally distributed. O a. .0428 O b.0391 O c.0129 O d. None of the above O e.0527
MATLAB: An Introduction with Applications
6th Edition
ISBN:9781119256830
Author:Amos Gilat
Publisher:Amos Gilat
Chapter1: Starting With Matlab
Section: Chapter Questions
Problem 1P
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![3. Final: A filling process is supposed to fill jars with 16 ounces of grape jelly. Specifications state that each jar must contain between 15.95
ounces and 16.05 ounces. A jar is selected from the process every half hour until a sample of 100 jars is obtained. When the fills of the jars
are measured, it is found that x (xbar) = 16.0024 and s = .02454. Using x (xbar) and s as point estimates of u (meu) and a (sigma),
estimate the probability that a randomly selected jar will have a fill, x, and that is out of specification. Assume that the process is in control
and that the population of all jar fills is normally distributed.
O a.0428
оь.0391
O .0129
O d. None of the above
O e.0527](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F5d4229a5-5bb3-4f1e-b842-6494b14e1cd4%2F2a476f65-80a6-4e3e-8564-f1a6a875b09b%2Ffkm1nw_processed.jpeg&w=3840&q=75)
Transcribed Image Text:3. Final: A filling process is supposed to fill jars with 16 ounces of grape jelly. Specifications state that each jar must contain between 15.95
ounces and 16.05 ounces. A jar is selected from the process every half hour until a sample of 100 jars is obtained. When the fills of the jars
are measured, it is found that x (xbar) = 16.0024 and s = .02454. Using x (xbar) and s as point estimates of u (meu) and a (sigma),
estimate the probability that a randomly selected jar will have a fill, x, and that is out of specification. Assume that the process is in control
and that the population of all jar fills is normally distributed.
O a.0428
оь.0391
O .0129
O d. None of the above
O e.0527
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