Lead time for computers is 5 days with daily demand of 25 and safety stock of 5 computers. If management wants to use 18 kanbans how many computers should each one hold? lead time daily demand safety stock number of kanbans Excel Access 5 days 25 units per day 5 units 18
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- Pauline Found Manufacturing, Inc., is moving to kanbans to support its telephone switching-board assembly lines. Determine the size of the kanban for subassemblies and the number of kanbans needed. Setup cost Annual holding cost Daily production Annual usage Lead time Safety stock $30 $125 per subassembly 20 subassemblies 3,000 (50 weeks x5 days each x daily usage of 12 subassemblies) 12 days 3 days' production Kanban container size = units (round your response to the nearest whole number).Pauline Found Manufacturing, Inc., is moving to kanbans to support its telephone switching-board assembly lines. Determine the size of the kanban for subassemblies and the number of kanbans needed. Setup cost Annual holding cost Daily production Annual usage Lead time Safety stock $30 $120 per subassembly 30 subassemblies 3,000 (50 weeks × 5 days each × daily usage of 12 subassemblies) 12 days 2 days' production Kanban container size = ☐ units (round your response to the nearest whole number).Pauline Found Manufacturing, Inc., is moving to kanbans to support its telephone switching-board assembly lines. Determine the size of the kanban for subassemblies and the number of kanbans needed. Setup cost $30 Annual holding cost $125 per subassembly Daily production 30 subassemblies Annual usage 3,000 (50 weeks×5 days each×daily usage of 12 subassemblies) Lead time 12 days Safety stock 4 days' production Part 2 Kanban container size = enter your response here units (round your response to the nearest whole number).
- Pauline Found Manufacturing, Inc., is moving to kanbans to support its telephone switching-board assembly lines. Determine the size of the kanban for subassemblies and the number of kanbans needed. Setup cost Annual holding cost Daily production Annual usage Lead time Safety stock $30 $100 per subassembly 30 subassemblies 3,000 (50 weeks x5 days each daily usage of 12 subassemblies) 16 days 3 days' production Kanban container size = 24 units (round your response to the nearest whole number).Pauline Found Manufacturing, Inc., is moving to kanbans to support its telephone switching-board assembly lines. Determine the size of the kanban for subassemblies and the number of kanbans needed. Setup cost Annual holding cost Daily production Annual usage $30 $120 per subassembly 20 subassemblies 4,500 (50 weeks x5 days each x daily usage of 18 subassemblies) 10 days Lead time: Safety stock 3 days' production Kanban container size = 150 units (round your response to the nearest whole number). Number of kanbans needed = 2 kanbans (round your response to the nearest whole number)Pauline Found Manufacturing, Inc., is moving to kanbans to support its telephone switching-board assembly lines. Determine the size of the kanban for subassemblies and the number of kanbans needed. Setup cost $30 Annual holding cost $120 per subassembly Daily production 25 subassemblies Annual usage 4,500 (50 weeks × 5 days each x daily usage of 18 subassemblies) 12 days Lead time Safety stock 4 days' production Kanban container size = units (round your response to the nearest whole number).
- Pauline Found Manufacturing, Inc., is moving to kanbans to support its telephone switching-board assembly lines. Determine the size of the kanban for subassemblies and the number of kanbans needed. Setup cost $30 Annual holding cost $100 per subassembly Daily production 20 subassemblies Annual usage 2,500 (50 weeks×5 days each×daily usage of 10 subassemblies) Lead time 12 days Safety stock 2 days' production Kanban container size = (enter your response here )units (round your response to the nearest whole number).Pauline Found Manufacturing, Inc., is moving to kanbans to support its telephone switching-board assembly lines. Determine the size of the kanban for subassemblies and the number of kanbans needed. Setup cost Annual holding cost Daily production Annual usage Lead time Safety stock $30 $110 per subassembly 40 subassemblies 4,000 (50 weeks × 5 days each daily usage of 16 subassemblies) 12 days 3 days' production Kanban container size = ☐ units (round your response to the nearest whole number).Flores Manufacturing, Inc., is moving to kanbans to support its electronic-board assembly lines. Determine the size of the kanban for subassemblies and the number of kanbans needed. Setup cost Annual holding cost subassembly Daily production Annual usage Lead time Safety stock $23 $200 per subassembly 550 subassemblies 50,000 (= 50 weeks x 5 days each x daily usage of 200 subassemblies) 3 days 1 day's production of subassemblies The kanban size is (round your response to the nearest whole number). The number of kanbans is (round your response to the nearest whole number).
- Pauline Found Manufacturing, Inc., is moving tokanbans to support its telephone switching-board assemblylines. Determine the size of the kanban for subassemblies and thenumber of kanbans needed.Setup cost = S30Annual holding cost = $120 per subassemblyDaily production = 20 subassembliesAnnual usage = 2,500 (50 weeks X 5 days eachX daily usage of 10 subassemblies)Lead time= 16 daysSafety stock = 4 days' production of subassembliesFlores Manufacturing, Inc., is moving to kanbans tosupport its electronic-boa rd assembly lines. Detennine the size of thekanban for subassemblies and the number of kanbans needed. F)cSetup cost = $25Annual holding cost = $200 per subassemblyDaily production = 400 subassembliesAnnual usage = 50,000 (=50 weeks X 5 days eachX daily usage of200 subassemblies)Lead time = 6 daysSafety stock = I day's production of subassembliesCarol Cagle has a repetitive manufacturing plant producing trailer hitches in Arlington, Texas. The plant has an average inventory turnover of only 12 times per year. He has therefore determined that he will reduce his component lot sizes. He has developed the following data for one component, the safety chain clip: Setup labor cost Annual holding cost $30 per hour $13 per unit 960 units/8 hour day 36,000 (250 days each x daily demand of 144 units) Daily production Annual demand Desired lot size 120 units (one hour of production) To obtain the desired lot size, the set-up time that should be achieved = ☐ minutes (round your response to two decimal places).