Thickness measurements of a coating process are made to the nearest hundredth of a millimeter. The thickness measurements are uniformly distributed with values 0.110, 0.111, 0.112, 0.113, and 0.114. 1. What is the probability that the thickness is less than 0.113? 2. What is the probability that the thickness is between 0.111 and 0.113? 3. Determine the mean of the coating thickness for this process. 4. Determine the variance of the coating thickness for this process.
Thickness measurements of a coating process are made to the nearest hundredth of a millimeter. The thickness measurements are uniformly distributed with values 0.110, 0.111, 0.112, 0.113, and 0.114. 1. What is the probability that the thickness is less than 0.113? 2. What is the probability that the thickness is between 0.111 and 0.113? 3. Determine the mean of the coating thickness for this process. 4. Determine the variance of the coating thickness for this process.
Glencoe Algebra 1, Student Edition, 9780079039897, 0079039898, 2018
18th Edition
ISBN:9780079039897
Author:Carter
Publisher:Carter
Chapter10: Statistics
Section10.4: Distributions Of Data
Problem 22PFA
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Thickness measurements of a coating process are made to the nearest hundredth of a millimeter. The thickness measurements are uniformly distributed with values 0.110, 0.111, 0.112, 0.113, and 0.114.
1. What is the probability that the thickness is less than 0.113?
2. What is the probability that the thickness is between 0.111 and 0.113?
3. Determine the mean of the coating thickness for this process.
4. Determine the variance of the coating thickness for this process.
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VIEWStep 2: Calculate probability that the thickness is less than 0.113
VIEWStep 3: Calculate probability that the thickness is between 0.111 and 0.113
VIEWStep 4: Calculate mean of the coating thickness for this process
VIEWStep 5: Calculate variance of the coating thickness for this process
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