It is always possible to balance an assembly line so that it operates at 100% efficiency true or false?
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It is always possible to balance an assembly line so that it operates at 100% efficiency
true or false?
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- The following tasks are to be performed on an assembly line: TASK SECONDS TASKS THAT MUST PRECEDE A 30 — B 16 A C 21 B D 15 B E 17 C F 14 D G 20 E, F H 9 G The workday is 8 hours long. The demand for completed product is 900 per day. Find the cycle time required to meet the desired output rate. Note: Round your answer to 1 decimal place.An assembly line with 50 activities is to be balanced. The total amount of time to complete all 50 activities is 60 minutes. The longest activity takes 1.8 minutes and the shortest takes 0.6 minute. The line will operate for 540 minutes per day. What are the maximum and minimum cycle times? Round your answers to one decimal place. Maximum cycle time: minutes Minimum cycle time: minutes How much daily output will be achieved by each of those cycle times? Round your answers to the nearest whole number. Daily output achieved by maximum cycle time: units/day Daily output achieved by minimum cycle time: units/dayI’m looking for part f and part f only: the efficiency of the assembly line with 5 work stations. All of the other parts are already answered and stated in the images. Thanks
- An assembly line is to be designed to operate 13 hours per day and supply a steady demand of 325 units per day. Here are the tasks and their performance times: TASK PRECEDINGTASKS PERFORMANCE TIME (SECONDS) TASK PRECEDINGTASKS PERFORMANCETIME (SECONDS) a — 48 g d 43 b — 58 h e 38 c — 73 i f 23 d a 63 j g 33 e b 88 k h, i 53 f c 23 l j, k 67 A) What is the efficiency of your line balance? B) Suppose demand increases by 10 percent. How would you react to this? Assume that you can operate only 13 hours per day in regular time. (Round your answers to the nearest whole number.)A firm desire to achieve a production rate of 100 units per 10 hours workday, work element data is shown in the precedence diagram (times are in minutes). Balance the assembly line under longest operating time and formulate the following: c) Compute the resulting percent idle time and efficiency of the system.d) Compute the system capacity.What are advantages and disadvantages of work cells? What is a heuristic? Name several that can be used in assembly-line balancing.
- The following tasks are to be performed on an assembly line: TASK SECONDS TASKS THAT MUST PRECEDE A 20 — B 7 A C 20 B D 22 B E 15 C F 10 D G 16 E, F H 8 G The workday is seven hours long. The demand for completed product is 750 per day. Find the cycle time required to meet the desired output rate. Note: Round your answer to 1 decimal place. What is the theoretical number of workstations required to meet the desired output rate? Note: Round up your answer to the next whole number. Balance the line using sequential restrictions and the longest-operating-time rule. Determine the task under each workstation and the idle time for each such task. Note: Round your answers to 1 decimal place. 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. Suppose that demand rose from 750 to 800 units per day. Determine the cycle time. (Use the…Mr. Aris Benn manages an assembly line that produces a piece of equipment that is used to clean floors. The process to produce this piece of equipment consists of 10 steps. Determine what other information is needed in order to balance this assembly line. Also, set up a numerical example of the line balancing problem at hand. Using this example, demonstrate how to balance the line and how to calculate its efficiency."Scheduling can be difficult and setup, material handling, and labor costs can be high, is the property of " Product-oriented layout. Office layout Retail layout Warehouse layout Fixed-position layout 2) Which of the following does not belongs to the standard work schedules? Five eight-hour day "Allows employees, within limits, to determine their own schedules" Fewer but longer days "Fewer, possibly irregular, hours" 3) Layout design considerations does not include: "Higher utilization of capital, infrastructure, and inventory" "Higher utilization of space, equipment, and people" "Improved flow of information, materials, or people" Improved employee morale and safer working conditions Improved customer/client interaction Note: Only give answer not description
- What is the objective of assembly-line balancing? How would you deal with the situation where one worker, although trying hard, is 20 percent slower than the other 10 people on a line?A production line is to be designed to make 500 El-More dolls per day. Each doll requires 11 activities totaling 16 minutes of work. The factory operates 750 minutes per day. What is the required cycle time for this assembly line?An assembly line is to be designed to operate 7½ hours per day and supply a steady demand of 300 units per day. Here are the tasks and their performance times: TASK PRECEDING TASKS PERFORMANCETIME (SECONDS) A — 70 B — 40 C — 45 D A 10 E B 30 F C 20 G D 60 H E 50 I F 15 J G 25 K H, I 20 L J, K 25 What is the workstation cycle time required to meet the desired output rate? What is the theoretical minimum number of workstations required to meet the desired output rate? Note: Round up your answer to the next whole number. Assign tasks to workstations using the longest operating time. What is the efficiency of your line balance, assuming it is running at the cycle time determined in part b? Note: Round your answer to 1 decimal place. Suppose demand increases by 10 percent. How would you react to this? Assume that you can operate only 71/2 hours per day. Note: Round your answer for cycle time down to the nearest whole number. Round your…