help 10   Temp 96.3 96.7 96.9 97 97.1 97.1 97.1 97.3 97.3 97.3 97.4 97.4 97.3 97.4 97.5 97.6 97.7 97.5 97.8 97.8 97.8 97.7 97.7 97.9 97.9 98 98 98.1 98 97.9 98 98.2 98.1 98.2 98.2 98.2 98.3 98.3 98.4 98.4 98.3 98.5 98.5 98.5 98.5 98.6 98.6 98.6 98.5 98.6 98.6 98.7 98.7 98.8 98.8 98.8 98.8 99.1 99 99 99.1 99.2 99.4 99.4 99.5 96.3 96.8 96.9 97.3 97.2 97.5 97.7 97.6 97.8 97.8 97.9 97.9 97.8 97.9 97.8 98 98.1 98 97.9 98 98.1 98.1 98.2 98.2 98.2 98.2 98.3 98.3 98.4 98.2 98.5 98.4 98.5 98.5 98.4 98.6 98.7 98.6 98.6 98.6 98.7 98.6 98.7 98.7 98.8 98.6 98.8 98.8 98.8 98.8 98.8 98.7 98.8 98.9 99 99.1 99 99 99.2 99.1 99.2 99.4 99.8 99.9 100.8

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Author:Amos Gilat
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help 10

 

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96.3
96.7
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Data temperatures

b. Compute the test statistic. Round your answer to 4 decimal places.
c. Compute the p-value. Round your answer to 4 decimal places.
d. Interpret the results of the test.
There is not sufficient evidence to support the claim that the average body temperature of
humans is different from 98.6 degrees F
There is sufficient evidence to support the claim that the average body temperature of
humans is different from 98.6 degrees F
Transcribed Image Text:b. Compute the test statistic. Round your answer to 4 decimal places. c. Compute the p-value. Round your answer to 4 decimal places. d. Interpret the results of the test. There is not sufficient evidence to support the claim that the average body temperature of humans is different from 98.6 degrees F There is sufficient evidence to support the claim that the average body temperature of humans is different from 98.6 degrees F
Background: The data set provided below was derived from an article in
the Journal of the American Medical Association entitled "A Critical Appraisal of 98.6 Degrees F, the Upper
Limit of the Normal Body Temperature, and Other Legacies of Carl Reinhold August Wunderlich" (Mackowiak,
Wasserman, and Levine 1992) by Allen Shoemaker. He recreated the original data set from a histogram and
published the article "What's Normal? -- Temperature, Gender, and Heart Rate", Journal of Statistics Education
v.4, n.2 (1996).
Directions: Perform an appropriate significance test to determine whether or not the average body
temperature of humans is different from 98.6.
1. Click on the Data button shown below to open the data in a new window.
2. One Mean Calculator --> Enter Data (Your Own) --> Copy and Paste Data --> Significance Test
3.
Data
4. Use the statistical software package to find the mean and sample standard deviation.
5. Perform the significance test.
a. Choose the correct null and alternative hypothesis.
Но: и — 98.6
На: и < 98.6
O Ho: H
На: и> 98.6
98.6
a
Но: и
98.6
На: д 2 98.6
О Но: и 98.6
Ha: H
98.6
а
b. Compute the test statistic. Round your answer to 4 decimal places.
Transcribed Image Text:Background: The data set provided below was derived from an article in the Journal of the American Medical Association entitled "A Critical Appraisal of 98.6 Degrees F, the Upper Limit of the Normal Body Temperature, and Other Legacies of Carl Reinhold August Wunderlich" (Mackowiak, Wasserman, and Levine 1992) by Allen Shoemaker. He recreated the original data set from a histogram and published the article "What's Normal? -- Temperature, Gender, and Heart Rate", Journal of Statistics Education v.4, n.2 (1996). Directions: Perform an appropriate significance test to determine whether or not the average body temperature of humans is different from 98.6. 1. Click on the Data button shown below to open the data in a new window. 2. One Mean Calculator --> Enter Data (Your Own) --> Copy and Paste Data --> Significance Test 3. Data 4. Use the statistical software package to find the mean and sample standard deviation. 5. Perform the significance test. a. Choose the correct null and alternative hypothesis. Но: и — 98.6 На: и < 98.6 O Ho: H На: и> 98.6 98.6 a Но: и 98.6 На: д 2 98.6 О Но: и 98.6 Ha: H 98.6 а b. Compute the test statistic. Round your answer to 4 decimal places.
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