etime of electronics: In a simple random sample of 100 electronic components produced by a certain method, the m etime was 125 hours. Assume that component lifetimes are normally distributed with population standard deviation o = purs. Round the critical value to no less than three decimal places. Part: 0/2 Part 1 of 2 (a) Construct an 80% confidence interval for the mean battery life. Round the answer to the nearest whole number. An 80% confidence interval for the mean battery life is

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Lifetime of electronics: In a simple random sample of 100 electronic components produced by a certain method, the mean
lifetime was 125 hours. Assume that component lifetimes are normally distributed with population standard deviation o = 20
hours. Round the critical value to no less than three decimal places.
Part: 0/ 2
Part 1 of 2
(a) Construct an 80% confidence interval for the mean battery life. Round the answer to the nearest whole number.
do
An 80% confidence interval for the mean battery life is
Transcribed Image Text:Lifetime of electronics: In a simple random sample of 100 electronic components produced by a certain method, the mean lifetime was 125 hours. Assume that component lifetimes are normally distributed with population standard deviation o = 20 hours. Round the critical value to no less than three decimal places. Part: 0/ 2 Part 1 of 2 (a) Construct an 80% confidence interval for the mean battery life. Round the answer to the nearest whole number. do An 80% confidence interval for the mean battery life is
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