Question 1- the concepts Professor Walters knows that the mean score on the midterm exam from all the years he has been teaching is 83%. Kennedy was in his most recent class, and his class's mean score on the final exam was 81%. Kennedy decided to run a hypothesis test to determine if the mean Score of his class was different than the mean score of the population. a = .01. What is the mean score of the population? What is the mean score of the sample? Is this test one-tailed or two-tailed? Why? What are the null and alternative hypotheses in this case? Let's pretend that p was calculated, and p 0.005, should Kennedy reject or fail to reject the null hypothesis? Why? What should Kennedy's statement of conclusion be? (This circles back to what is being tested).

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Question 1– the concepts
Professor Walters knows that the mean score on the midterm exam from all the years he has
been teaching is 83%. Kennedy was in his most recent class, and his class's mean score on
the final exam was 81%. Kennedy decided to run a hypothesis test to determine if the mean
Score of his class was different than the mean score of the population. a = .01.
What is the mean score of the population?
What is the mean score of the sample?
Is this test one-tailed or two-tailed? Why?
What are the null and alternative hypotheses in this case?
Let's pretend that p was calculated, and p = 0.005, should Kennedy reject or fail to
reject the null hypothesis? Why?
What should Kennedy's statement of conclusion be? (This circles back to what is being
tested).
Transcribed Image Text:Question 1– the concepts Professor Walters knows that the mean score on the midterm exam from all the years he has been teaching is 83%. Kennedy was in his most recent class, and his class's mean score on the final exam was 81%. Kennedy decided to run a hypothesis test to determine if the mean Score of his class was different than the mean score of the population. a = .01. What is the mean score of the population? What is the mean score of the sample? Is this test one-tailed or two-tailed? Why? What are the null and alternative hypotheses in this case? Let's pretend that p was calculated, and p = 0.005, should Kennedy reject or fail to reject the null hypothesis? Why? What should Kennedy's statement of conclusion be? (This circles back to what is being tested).
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