Question: Task 1 Item Item on case Answer Task 1 stations 15 Stations Vehicles/hour b 10 vehicles per hour Total C 150 Total vehicles per hour

Task 1 Item Item on case Answer Task 1 stations
Task 1 Item Item on case Answer Task 1 stations 15 Stations Vehicles/hour b 10 vehicles per hour Total C 150 Total vehicles per hour (w/o delays) Vehicles/hour Daily d 1,500 per day @ 10 hour shift Capacity Would you consider revising No, because the current ratio is at 1.06 (160/150), meaning I'm the service time to account for ensuring lead into my bottleneck of testing stations for delays like delays that may occur during changing PPE (gloves, gowns, masks) the day? Yes/No and explain your reasoning. vehicles e 160 total vehicles that can queue (80 per lane) feet 4,000 total ft (2,000 ft. per lane) feet/vehicle 25 ft per vehicle wait time 25 mins wait time Explain how you came up with Vehicles that can queue = total queue ft/vehicle ft = 4,000/25 = 160 your wait time answer Volume of vehicles per hour = # of testing stations x 60 mins per hour / # of mins per vehicle. 15 stations x 60mins/6mins = 150 Total wait time through queue = Total length of vehicle queue/ volume of vehicles per hour 4,000/150 = 25 mins Task 2 Total Annual a 540,000 (1,500 per day x 360 days) tests Gowns b Click or tap here to enter text. Gloves Click or tap here to enter text. Masks Click or tap here to enter text

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