A professor believes that, for the introductory art history classes at his university, the mean test score of students in the evening classes is lower than the mean test score of students in the morning classes. He collects data from a random sample of 150 students in evening classes and finds that they have a mean test score of 88.8. He knows the population standard deviation for the evening classes to be 2.2 points. A random sample of 250 students from morning classes results in a mean test score of 89.7. He knows the population standard deviation for the morning classes to be 8.7 points. Test his claim with a 99% level of confidence. Let evening classes be Population 1 and let morning classes be Population 2 Step 1 of 3: State the null and alternative hypotheses for the test. Step 2 of 3: Compute the value of the test statistic. Round your answer to two decimal places. Step 3 of 3: Draw a conclusion and interpret the decision

MATLAB: An Introduction with Applications
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A professor believes that, for the introductory art history classes at his university, the mean test score of students in the evening classes is lower than the mean test score of students in the morning classes. He collects data from a random sample of 150 students in evening classes and finds that they have a mean test score of 88.8. He knows the population standard deviation for the evening classes to be 2.2 points. A random sample of 250 students from morning classes results in a mean test score of 89.7. He knows the population standard deviation for the morning classes to be 8.7 points. Test his claim with a 99% level of confidence. Let evening classes be Population 1 and let morning classes be Population 2

Step 1 of 3:
State the null and alternative hypotheses for the test.
Step 2 of 3:
Compute the value of the test statistic. Round your answer to two decimal places.
Step 3 of 3:
Draw a conclusion and interpret the decision.
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