in uncam dIfferent from the mean amount of airborne bacteria in uncarpeted rooms. To test this, carpeted and ount of bacteria on the dish was recorded The results are presented in the following table:...


in<br>uncam dIfferent from the mean amount of airborne bacteria in uncarpeted rooms. To test this, carpeted and<br>ount of bacteria on the dish was recorded The results are presented in the following table:<br>Uncarpeted rooms<br>Carpeted rooms<br>12.1<br>9.8<br>Sample mean of bacteria per ft'<br>Sample std. dev. of bacteria per ft<br>Number of rooms tested<br>3.2<br>2.7<br>23<br>%3D<br>U.05 to see test if the amount off airborne bacteria is different in carpeted rooms than in uncarpeted<br>rooms.<br>I.<br>State your hypotheses<br>II.<br>State the allowable type I error rate (a.)<br>III.<br>Calculate your test statistic, the p-value and draw the physical representation of the p-value<br>IV.<br>Make your decision to either reject the null or fail to reject the null.<br>V.<br>Make a concluding statement.<br>b.) Run a 95% confidence interval for the hypothesis test above. Don't forget to make a proper conclusion.<br>

Extracted text: in uncam dIfferent from the mean amount of airborne bacteria in uncarpeted rooms. To test this, carpeted and ount of bacteria on the dish was recorded The results are presented in the following table: Uncarpeted rooms Carpeted rooms 12.1 9.8 Sample mean of bacteria per ft' Sample std. dev. of bacteria per ft Number of rooms tested 3.2 2.7 23 %3D U.05 to see test if the amount off airborne bacteria is different in carpeted rooms than in uncarpeted rooms. I. State your hypotheses II. State the allowable type I error rate (a.) III. Calculate your test statistic, the p-value and draw the physical representation of the p-value IV. Make your decision to either reject the null or fail to reject the null. V. Make a concluding statement. b.) Run a 95% confidence interval for the hypothesis test above. Don't forget to make a proper conclusion.

Jun 02, 2022
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