Movie Theater Attendance The data shown are the weekly admissions, in theaters over three different time periods. At a=0.10, is there a difference in the means for the weekly att for these time periods? Use the critical value method with tables. 1950-1974 58.4 39.5 24.8 18.2 16.6 17.3 14.8 Send data to Excel Part: 0 / 5 Part 1 of 5 Assume that all variables are normally distributed, that the samples are independent, that the population variances are equal, and that the samples are simple random samples, one from each of the populations. Part: 1/5 1975-1990 17.4 18.8 Part 2 of 5 Identify the claim with the correct hypothesis. Ho H₁ H₂ H3 Claim H₁: At least one mean is different from the others. Not claim Part: 2/5 19.5 20.4 23.6 25.9 27.5 Part 3 of 5 1991-2000 22.1 26.8 28.7 25.9 24.0 26.8 26.1 Find the critical value. Use The F Distribution Table to find the critical value. Round the answer to two decimal places. The critical value is 0 F = 0 Compute the test value. Round the intermediate and the final answers to two decimal places.

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10:56 AM Sun Feb 19
1950-1974
58.4
39.5
24.8
18.2
16.6
Movie Theater Attendance The data shown are the weekly admissions, in millions, of people attending movie
theaters over three different time periods. At a=0.10, is there a difference in the means for the weekly attendance
for these time periods? Use the critical value method with tables.
17.3
14.8
Send data to Excel
Part: 0/5
Part 1 of 5
Assume that all variables are normally distributed, that the samples are independent, that the population
variances are equal, and that the samples are simple random samples, one from each of the populations.
Part: 1/5
Part 2 of 5
1975-1990
17.4
18.8
19.5
20.4
23.6
25.9
27.5
Identify the claim with the correct hypothesis.
Ho H₁ H₂ H3 Claim
H₁: At least one mean is different from the others. Not claim
Part: 2/5
Part 3 of 5
1991-2000
22.1
26.8
...
www-awu.connectmath.com
28.7
25.9
24.0
26.8
26.1
Find the critical value. Use The F Distribution Table to find the critical value. Round the answer to two
decimal places.
The critical value is 0.
Part: 3/5
Dart of C
Compute the test value. Round the intermediate and the final answers to two decimal places.
F = 0
65%
db
Submit Assignment
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Transcribed Image Text:10:56 AM Sun Feb 19 1950-1974 58.4 39.5 24.8 18.2 16.6 Movie Theater Attendance The data shown are the weekly admissions, in millions, of people attending movie theaters over three different time periods. At a=0.10, is there a difference in the means for the weekly attendance for these time periods? Use the critical value method with tables. 17.3 14.8 Send data to Excel Part: 0/5 Part 1 of 5 Assume that all variables are normally distributed, that the samples are independent, that the population variances are equal, and that the samples are simple random samples, one from each of the populations. Part: 1/5 Part 2 of 5 1975-1990 17.4 18.8 19.5 20.4 23.6 25.9 27.5 Identify the claim with the correct hypothesis. Ho H₁ H₂ H3 Claim H₁: At least one mean is different from the others. Not claim Part: 2/5 Part 3 of 5 1991-2000 22.1 26.8 ... www-awu.connectmath.com 28.7 25.9 24.0 26.8 26.1 Find the critical value. Use The F Distribution Table to find the critical value. Round the answer to two decimal places. The critical value is 0. Part: 3/5 Dart of C Compute the test value. Round the intermediate and the final answers to two decimal places. F = 0 65% db Submit Assignment © 2023 McGraw Hill CA Rights Reserved. Terms of Use | Privacy Center
Part 4 of 5
Make the decision.
Reject
Part: 4 / 5
Part 5 of 5
the null hypothesis.
X
Summarize the results.
There is (Choose one)
that there is a significant
difference in the mean for the weekly attendance for these time periods.
Submit Assignment
2023 McGraw Hilll LLC. All Rights Reserved. Terms of Use | Privacy Center
Transcribed Image Text:Part 4 of 5 Make the decision. Reject Part: 4 / 5 Part 5 of 5 the null hypothesis. X Summarize the results. There is (Choose one) that there is a significant difference in the mean for the weekly attendance for these time periods. Submit Assignment 2023 McGraw Hilll LLC. All Rights Reserved. Terms of Use | Privacy Center
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