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Java Problems Thanks Consider a single-server queue operating on discrete time slots, with Bernoulli arrivals and departures in each time slot. The departure rate is

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Consider a single-server queue operating on discrete time slots, with Bernoulli arrivals and departures in each time slot. The departure rate is 075 Plot the expected delay of a job as function of the arrival rate . You have to run the simulations long enough, for example at least for 106 time slots. (Hints: use Little's law to calculate the expected delay, but you have to simulate the queue dynamics to get the expected queue length first.) Consider a single-server queue operating on discrete time slots, with Bernoulli arrivals and departures in each time slot. The departure rate is 075 Plot the expected delay of a job as function of the arrival rate . You have to run the simulations long enough, for example at least for 106 time slots. (Hints: use Little's law to calculate the expected delay, but you have to simulate the queue dynamics to get the expected queue length first.)

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