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Customers arrive at Rich Dunn's Styling Shop at a rate of 4 per hour, distributed in a Poisson fashion. Service times follow a negative exponential
Customers arrive at Rich Dunn's Styling Shop at a rate of
4
per hour, distributed in a Poisson fashion. Service times follow a negative exponential distribution, and Rich can perform an average of
8
haircuts per hour.
Customers arrive at Rich Dunn's Styling Shop at a rate of 4 per hour, distributed in a Poisson fashion. Service times follow a negative exponential distribution, and Rich can perform an average of 8 haircuts per hour. a) The average number of customers waiting for haircuts = customers (round your response to two decimal places). Customers arrive at Rich Dunn's Styling Shop at a rate of 4 per hour, distribute in a Poisson fashion. Service times follow a negative exponential distribution, and Rich can perform an average of 5 haircuts per hour. The queueing model to be used = For M/M/1 queuing model, the relationship for finding the Average Number in the Queue is: Lq=()2. a) The average number of customers waiting for haircuts = customers (round your response to two decimal places). For M/M/1 queuing model, the relationship for finding the Average Number in the System is: Ls= b) The average number of customers in the shop = customers (round your response to two decimal places). For M/M/1 queuing model, the relationship for finding the Average Time in theStep by Step Solution
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