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Please Help Bryce Dodson's Car Wash is open 6 days a week, but its busiest day is always Saturday. From historical data, Bryce estimates that dirty cars arrive at the rate of 20 per hour all day Saturday. With a full crew working the hand-wash line, he figures that cars can be cleaned at the rate of one every 2 minutes. One car at a time is cleaned in this example of a single-channel waiting line. Assume Poisson arrivals and negative exponential service times. a) The average number of cars in line is 1.33 cars (round your response to two decimal places). b) Search documents and file names for text it is washed is 0.0667 hours (round your response to four decimal places). c) The average time that a car spends in the service system is 0.1 hours (round your response to one decimal place) d) The utilization rate of the car wash is 0.667 (round your response to three decimal places). e) The probability that no cars are in the system is 0.33 (round your response to three decimal places). f) Bryce is thinking of switching to an all-automated car wash that uses no crew. The equipment under consideration washes one car every minute at a constant rate. The average number of cars in line will be 0.083 cars (round your response to three decimal places). a Screen Shot 2018-10-07 at 8.53.41 PM Q Search The average number of cars in line will becars (round your response to three decimal places) The average time that a car waits before it is washed will be hours round) our response to our decimal places The average time that a car spends in the service system will behours (round your response to four decimal places) The utilization rate of the car wash will be (round your response to three decimal places). The probability that no cars are in the system will be (round your response to three decimal places). Enter your answer in each of the answer boxes.