Economics Women arrive at a hairdresser that operates in Withington, Manchester with a single haircut and single manicure services according to a Poisson process. The arrival rate of customers is 2 per hour. Service times for haircut and manicure are represented by exponential random variables with rates 4 and 6 per hour, respectively. Since getting a haircut takes longer than a manicure, the arriving customer directly sits for a haircut if the seat is not occupied. If another person is getting a haircut once the new customer arrives and manicure seat is free, she begins her manicure. If both of the seats are busy, the new arrival is cannot enter the system. A customer who completes her haircut goes for a manicure if it is empty else, leaves the hairdresser. Customers leave the hairdresser after receiving a manicure. a)Calculate long-run probabilities of all states. b)Determine the fraction of women who cannot enter the system?
Economics Women arrive at a hairdresser that operates in Withington, Manchester with a single haircut and single manicure services according to a Poisson process. The arrival rate of customers is 2 per hour. Service times for haircut and manicure are represented by exponential random variables with rates 4 and 6 per hour, respectively. Since getting a haircut takes longer than a manicure, the arriving customer directly sits for a haircut if the seat is not occupied. If another person is getting a haircut once the new customer arrives and manicure seat is free, she begins her manicure. If both of the seats are busy, the new arrival is cannot enter the system. A customer who completes her haircut goes for a manicure if it is empty else, leaves the hairdresser. Customers leave the hairdresser after receiving a manicure. a)Calculate long-run probabilities of all states. b)Determine the fraction of women who cannot enter the system?
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Economics
Women arrive at a hairdresser that operates in Withington, Manchester with a single haircut and single manicure services according to a Poisson process. The arrival rate of customers is 2 per hour. Service times for haircut and manicure are represented by exponential random variables with rates 4 and 6 per hour, respectively. Since getting a haircut takes longer than a manicure, the arriving customer directly sits for a haircut if the seat is not occupied. If another person is getting a haircut once the new customer arrives and manicure seat is free, she begins her manicure. If both of the seats are busy, the new arrival is cannot enter the system. A customer who completes her haircut goes for a manicure if it is empty else, leaves the hairdresser. Customers leave the hairdresser after receiving a manicure.
a)Calculate long-run probabilities of all states.
b)Determine the fraction of women who cannot enter the system?
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