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a.aleks.com/alekscgi/x/Isl.exe/10_u-lgNslkr7j8P3jH-li-WSp540wncg8Tof4a5q5fmgWG31RYRVbH2jvoreofGMgZogOVPv167HFZRV-Va-_rS6n38nVTrVix3Aub51XDFleOKqSLR?10Bw7QYjibavbSPXtx-YCjs HW: Sections 4.5 - 4.7 Assignment E Question 31 of 32 (1 point) | Question Attempt: 2 of Unlimited 26 V 27 28 29

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a.aleks.com/alekscgi/x/Isl.exe/10_u-lgNslkr7j8P3jH-li-WSp540wncg8Tof4a5q5fmgWG31RYRVbH2jvoreofGMgZogOVPv167HFZRV-Va-_rS6n38nVTrVix3Aub51XDFleOKqSLR?10Bw7QYjibavbSPXtx-YCjs HW: Sections 4.5 - 4.7 Assignment E Question 31 of 32 (1 point) | Question Attempt: 2 of Unlimited 26 V 27 28 29 30 31 20 21 22 23 24 25 A brisk walk at 4 miles per hour burns an average of 320 calories per hour. If the standard deviation of the distribution is 9 calories, find the probability that a person who walks 1 hour at the rate of 4 miles per hour will burn the given number of calories. Assume the random variable is normally distributed. Refer to the table of values ( Area Under the Standard Normal Distribution) as needed. If necessary, round intermediate calculations to the nearest hundredth. Part 1 of 3 (a) More than 262 calories The probability that a randomly selected person burns more than 262 calories is |100%. Part: 1 / 3 Part 2 of 3 (b) Less than 314 calories The probability that a randomly selected person burns less than 314 calories is% X

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