A bus comes by every 13 minutes. The times from when a person arives at the busstop until the bus arrives follows a Uniform distribution from 0 to 13 minutes. A person arrives at the bus stop at a...


A bus comes by every 13 minutes. The times from when<br>a person arives at the busstop until the bus arrives<br>follows a Uniform distribution from 0 to 13 minutes. A<br>person arrives at the bus stop at a randomly selected<br>time. Round to 4 decimal places where possible.<br>a. The mean of this distribution is<br>b. The standard deviation is<br>c. The probability that the person will wait more<br>than 7 minutes is<br>d. Suppose that the person has already been<br>waiting for 1 minutes. Find the probability that<br>the person's total waiting time will be between<br>4.2 and 5.2 minutes<br>e. 12% of all customers wait at least how long for<br>the train?<br>minutes.<br>

Extracted text: A bus comes by every 13 minutes. The times from when a person arives at the busstop until the bus arrives follows a Uniform distribution from 0 to 13 minutes. A person arrives at the bus stop at a randomly selected time. Round to 4 decimal places where possible. a. The mean of this distribution is b. The standard deviation is c. The probability that the person will wait more than 7 minutes is d. Suppose that the person has already been waiting for 1 minutes. Find the probability that the person's total waiting time will be between 4.2 and 5.2 minutes e. 12% of all customers wait at least how long for the train? minutes.

Jun 09, 2022
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