compete WIDT store decides Ly sending DVD! obtain data on delivery times when DVDs are mailed to customers and return times when DVDs are mailed back to the store. ends to Let the random variable X denote the delivery time when a DVD mailed to a customer, and let the random variable Y denote the return time when a customer mails the DVD back to the store. The store owner found that the mean delivery time, E(X), was 1.8 days, and that the standard deviation of delivery time, SD(X), is 0.8 days. She found that the mean return time, E(Y), is 2.2 days, with a standard deviation SD(Y) of 0.7 days. Question 1. Determine the mean and standard deviation of the total transit time for a DVD (that is, the delivery time when mailed to the customer plus the return time when mailed back to the store). days, mean total transit time days, standard deviation of total transit time (use 3 decimal places) Question 2. On average the return time Y is greater than the delivery time X. Determine the mean and standard deviation of how much the return time Y exceeds the delivery time X. days, mean of how much the return time exceeds the delivery time. days, standard deviation of how much the return time exceeds the delivery time.
compete WIDT store decides Ly sending DVD! obtain data on delivery times when DVDs are mailed to customers and return times when DVDs are mailed back to the store. ends to Let the random variable X denote the delivery time when a DVD mailed to a customer, and let the random variable Y denote the return time when a customer mails the DVD back to the store. The store owner found that the mean delivery time, E(X), was 1.8 days, and that the standard deviation of delivery time, SD(X), is 0.8 days. She found that the mean return time, E(Y), is 2.2 days, with a standard deviation SD(Y) of 0.7 days. Question 1. Determine the mean and standard deviation of the total transit time for a DVD (that is, the delivery time when mailed to the customer plus the return time when mailed back to the store). days, mean total transit time days, standard deviation of total transit time (use 3 decimal places) Question 2. On average the return time Y is greater than the delivery time X. Determine the mean and standard deviation of how much the return time Y exceeds the delivery time X. days, mean of how much the return time exceeds the delivery time. days, standard deviation of how much the return time exceeds the delivery 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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Transcribed Image Text:To compete with Netflix, the owner of a local movie rental store decides to try sending DVDs through the mail. To plan for this endeavor, she sends DVDs to her friends to
obtain data on delivery times when DVDs are mailed to customers and return times when DVDs are mailed back to the store.
Let the random variable X denote the delivery time when a DVD is mailed to a customer, and let the random variable denote the return time when a customer mails the
DVD back to the store.
The store owner found that the mean delivery time, E(X), was 1.8 days, and that the standard deviation of delivery time, SD(X), is 0.8 days. She found that the mean return
time, E(Y), is 2.2 days, with a standard deviation SD(Y) of 0.7 days.
Question 1. Determine the mean and standard deviation of the total transit time for a DVD (that is, the delivery time when mailed to the customer plus the return time
when mailed back to the store).
days, mean total transit time
days, standard deviation of total transit time (use 3 decimal places)
Question 2. On average the return time Y is greater than the delivery time X. Determine the mean and standard deviation of how much the return time Y exceeds the
delivery time X.
days, mean of how much the return time exceeds the delivery time.
days, standard deviation of how much the return time exceeds the delivery time.
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