Suppose that you are interested in estimating the average number of miles per gallon of gasoline your car can get. You calculate the miles per gallon for each of the next twenty-two times you fill the tank. Suppose that in truth, the values for your car are bell-shaped, with a mean of 24 miles per gallon and a standard deviation of 1. Find the possible sample means you are likely to get based on your sample of twenty-two observations. Consider the intervals into which 68%, 95%, and almost all of the potential sample means will fall, using the Empirical Rule. (Round all answers to the nearest thousandth.)
Suppose that you are interested in estimating the average number of miles per gallon of gasoline your car can get. You calculate the miles per gallon for each of the next twenty-two times you fill the tank. Suppose that in truth, the values for your car are bell-shaped, with a mean of 24 miles per gallon and a standard deviation of 1. Find the possible sample means you are likely to get based on your sample of twenty-two observations. Consider the intervals into which 68%, 95%, and almost all of the potential sample means will fall, using the Empirical Rule. (Round all answers to the nearest thousandth.)
Glencoe Algebra 1, Student Edition, 9780079039897, 0079039898, 2018
18th Edition
ISBN:9780079039897
Author:Carter
Publisher:Carter
Chapter10: Statistics
Section10.5: Comparing Sets Of Data
Problem 14PPS
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Suppose that you are interested in estimating the average number of miles per gallon of gasoline your car can get. You calculate the miles per gallon for each of the next twenty-two times you fill the tank. Suppose that in truth, the values for your car are bell-shaped, with a
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