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Suppose 213 subjects are treated with a drug that is used to treat pain and 54 of them developed nausea. Use a 0.01 signicance level

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Suppose 213 subjects are treated with a drug that is used to treat pain and 54 of them developed nausea. Use a 0.01 signicance level to test the claim that more than 20% of users develop nausea. (3 Identify the null and alternative hypotheses for this test. Choose the correct answer below. {j} A. H0: p = 0.20 H1: p 0.20 H1: p = 0.20 ":2 C. H0: p = 0.20 H1: p 0.20 -":j:- D. H0: p = 0.20 H1: p > 0.20 Identify the test statistic for this hypothesis test. The test statistic for this hypothesis test is D. (Round to two decimal places as needed.) Identify the Pvalue for this hypothesis test. The P-value for this hypothesis test is D. (Round to three decimal places as needed.) Identify the conclusion for this hypothesis test. O A. Fail to reject Ho. There is not sufficient evidence to warrant support of the claim that more than 20% of users develop nausea. O B. Fail to reject Ho. There is sufficient evidence to warrant support of the claim that more than 20% of users develop nausea. O C. Reject Ho. There is not sufficient evidence to warrant support of the claim that more than 20% of users develop nausea. O D. Reject Ho. There is sufficient evidence to warrant support of the claim that more than 20% of users develop nausea.A doctor is monitoring certain patients' body temperatures throughout the day. The temperatures for 5 different patients at 8 AM and 4 PM are shown below. Patient A B C D E Body Temperature 8 AM (.C) 46.22 49.39 42.22 44.67 41.94 Body Temperature 4 PM (.C) 46.67 48.39 40.61 44.39 42.83 Difference -0.45 1 1.61 0.28 -0.89 1. Assume a normal distribution of the population of differences. What is the upper limit for the 95% confidence interval on the mean difference of the 8 AM temperatures and 4 PM temperatures? O A. 1.580 O B. -0.953 O C. 1.112 O D. 0.875 2. Calculate the 95% lower confidence level limit of the mean difference of 8 AM temperatures and 4 PM temperatures . We can conclude using this information that A. That the temperatures at 8 AM are independent of the body temperatures at 4 PM. O B. There is not sufficient evidence to conclude that the difference between body temperatures is different than 0. O C. There is evidence to suggest that the 8 AM temperatures are less than the body temperatures at 4 PM. O D. There is evidence to suggest that the 8 AM temperatures are greater than the body temperatures at 4 PM

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