Step 3: Assess the Evidence (Calculate the test statistic for the observed sample mean. Sketch the T-distribution and identify the position of the observed test statistic. Shade the area that represents the P-value. Use the test statistic to find the P-value.)

MATLAB: An Introduction with Applications
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Author:Amos Gilat
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Chapter1: Starting With Matlab
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Step 3: Assess the Evidence (Calculate the test statistic for the observed sample mean. Sketch the
T-distribution and identify the position of the observed test statistic. Shade the area that represents
the P-value. Use the test statistic to find the P-value.)
Transcribed Image Text:Step 3: Assess the Evidence (Calculate the test statistic for the observed sample mean. Sketch the T-distribution and identify the position of the observed test statistic. Shade the area that represents the P-value. Use the test statistic to find the P-value.)
5 Imagine that a company sells portable walkie-talkie radios to construction crews. The batteries for these
radios last for an average of 55 hours. The purchasing manager for this company receives a brochure in
the mail that advertises a new brand of batteries. This new brand of batteries is cheaper than the brand
that the company currently uses. However, the purchasing manager is concerned that the cheaper
batteries may have a shorter average battery life than the current brand. (Note: The number of hours
that batteries last is called their battery life.) The pricing manager installs 40 randomly selected batteries
of the cheaper brand in the company's walkie-talkie radios. He finds that the mean battery life for the
sample is 52 hours, with a standard deviation of 10 hours. He wants to perform a statistical test at the
1% level of significance to determine whether the cheaper batteries have a shorter average battery life
span than the average life span of the brand of batteries the company currently uses.
Transcribed Image Text:5 Imagine that a company sells portable walkie-talkie radios to construction crews. The batteries for these radios last for an average of 55 hours. The purchasing manager for this company receives a brochure in the mail that advertises a new brand of batteries. This new brand of batteries is cheaper than the brand that the company currently uses. However, the purchasing manager is concerned that the cheaper batteries may have a shorter average battery life than the current brand. (Note: The number of hours that batteries last is called their battery life.) The pricing manager installs 40 randomly selected batteries of the cheaper brand in the company's walkie-talkie radios. He finds that the mean battery life for the sample is 52 hours, with a standard deviation of 10 hours. He wants to perform a statistical test at the 1% level of significance to determine whether the cheaper batteries have a shorter average battery life span than the average life span of the brand of batteries the company currently uses.
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