For a recent 10k run, the finishers are normally distributed with mean 63 minutes and standard deviation 14 minutes. Complete parts (a) through (d) below. Click here to view page 1 of the standard normal distribution table. Click here to view page 2 of the standard normal distribution table. *** www. (Round to two decimal places as needed.) b. Determine the percentage of finishers with times less than 80 minutes. Approximately 88.77 % of finishers had times less than 80 minutes. (Round to two decimal places as needed.) c. Obtain and interpret the 30th percentile for the finishing times. The 30th percentile is 55.66 minutes. (Round to two decimal places as needed.) Interpret the 30th percentile. Select the correct choice below and fill in the answer box(es) to complete your choice. (Type integers or decimals rounded to two decimal places as needed.) A. This percentile means that B. This percentile means that % of the finishing times are equal to % of the finishing times are less than greater than the smallest finishing time.
For a recent 10k run, the finishers are normally distributed with mean 63 minutes and standard deviation 14 minutes. Complete parts (a) through (d) below. Click here to view page 1 of the standard normal distribution table. Click here to view page 2 of the standard normal distribution table. *** www. (Round to two decimal places as needed.) b. Determine the percentage of finishers with times less than 80 minutes. Approximately 88.77 % of finishers had times less than 80 minutes. (Round to two decimal places as needed.) c. Obtain and interpret the 30th percentile for the finishing times. The 30th percentile is 55.66 minutes. (Round to two decimal places as needed.) Interpret the 30th percentile. Select the correct choice below and fill in the answer box(es) to complete your choice. (Type integers or decimals rounded to two decimal places as needed.) A. This percentile means that B. This percentile means that % of the finishing times are equal to % of the finishing times are less than greater than the smallest finishing time.
MATLAB: An Introduction with Applications
6th Edition
ISBN:9781119256830
Author:Amos Gilat
Publisher:Amos Gilat
Chapter1: Starting With Matlab
Section: Chapter Questions
Problem 1P
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