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e. What is the efficiency of the line balanced as in part (d) assuming it is running at the cycle time determined in part (a)?

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e. What is the efficiency of the line balanced as in part (d) assuming it is running at the cycle time determined in part (a)? Note: Round your answer to 1 decimal place. f. Suppose that demand rose from 500 to 550 units per day. Determine the cycle time. Use the solution obtained in part (d).) Note: Round your answer for cycle time down to the nearest whole number. What is the theoretical number of workstations required to meet the desired output rate? Note: Round up your answer to the next whole number. 1. Balance the line using sequential restrictions and the longest-operating-tim - rule. Determine the task under each workstation and the idle time for each such task. Note: Leave no cells blank - be certain to enter " 0 " wherever required. Round your answers to 1 decimal place. 9. Suppose that demand rose from 500 to 950 units per day. Determine the cycle time. (Use the solution obtained in part (d)).) Note: Round your answer for cycle time down to the nearest whole number. The following tasks are to be performed on an assembly line: The workday is 6.25 hours long. The demand for completed product is 500 per day. a. Find the cycle time required to meet the desired output rate. Note: Round your answer to 1 decimal place

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