Balancing a production line includes the following tasks, EXCEPT: Finding a cycle time in which each workstation can complete its tasks Take into account precedence relationships among tasks O Identify the task with the longest operation time O Calculate the number of workstations that completes the job in the minimum amount of time
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- Kiko Teddy Bear is a manufacturer of stuffed teddy bears. Kiko would like to be able to produce 40 teddy bears per hour on its assembly line. The following information will assist in answering the questions that follow: Task Information for Kiko Teddy Bear What is the maximum possible output of the line? What is the theoretical minimum number of workstations using the cycle time computed in” b “above Assign tasks to workstations using the cycle time in “b” above.A manutacturer is designing a product layout for a new product production. It plans to use a production line for B hours per day in order to meet forecasted demand of 100 units per day. The product requires 7 lasks in total. These tasks are namely, A, 8, CD, E, F, and G respectively. Task A does not have any predecessor to start. To start Task B, it requires Task A to be completed Starting tasks Cneeds, the tack B to be completed. Also, starting task D needed task B to be completed Task E can only start upon completion of Task C. Whescas starting lask F needs the completion of both the tasks D and E Finally, starting task G needed, task Fto be completed. 1the processing times for tasks, A BC D, E F, andG are 28, 2.1, 0.9, 1.0, 1.2, 1.8, are 4.7 minutes respectively. Applying the most following tasks nule for balancing the assembly line, with ties broken according to longest task time first, the tasks that will be assigned to the FIRST workstation are Select one OaAB, and C ODAB Oc None…A product is completed when 18 tasks are done. These tasks are assigned to 6 workstations (each workstation handling several tasks) in an assembly line set up. All workstations work the same amount of time (= cycle time), and move the (partial) product to the next workstation, and repeat this process. The last workstation generates the finished product. We need 1200 units made every day (= 8 hours). If we run this line with a cycle time of 0.3 minutes, what is the most amount of work (in minutes) that can be done on this product? (Give the answer with one decimal place)
- A local toy manufacturer is using a production line that runs hours per day and produces a toy that requires a total of 7 tasks to be performed. The daily demand is 100 toys. Times of the tasks are 2.73, 201 01, 2.13, 2.0, 2.61 2.71. and 2.95 minutes for A, BC, D , and G, respectively. However, due to the nature of the product there are precedence rules that must be observed. Such that Task A does not need any predecessors; task B requires task A to be completed. To start task and task each require task B to be completed. Task must be completed prior to stating task E. Task F needs both task Dand task E to be completed. Finally, task G can start only once task Fis completed . What should be the calculated cycle time in minutes?A local toy manufacturer is using a production line that runs 8 hours per day and produces a toy that requires a total of 7 tasks to be performed . The daily demand is 100 toys. Times of the tasks are 2.73,2.01 1,2.13,2.0,2.61,2. 2.71 , and 2.95 minutes for A, B, C, D, E, F , and G , respectively . However , due to the nature of the product there are precedence rules that must be observed . Such that Task A does not need any predecessors ; task B requires task A to be completed . To start task C and task D, each require task B to be completed . Task C must be completed prior to stating task E. Task F needs both task D and task E to be completed . Finally , task G can start only once task F is completed . What should be the calculated cycle time in minutes ? a. 0.9 b. 4.5 c. None is correct d. 4.8 e. 4.4Assign the 4 departments in Table X to locations A, B, C, and D, which are separated by the distances shown in Table y, in such a way that transportation cost is minimized. Use this heuristic: assign departments with the greatest interdepartmental workflow first. See attached tables.
- A local toy manufacturer is using a production line that runs 8 hours per day and produces a toy that requires a total of 7 tasks to be performed. The daily demand is 100 toys. Times of the tasks are 2.73,2.01,2.13,2.0.2.61,2.71 , and 2.95 minutes for A A,B,C,D,E,F, and G, respectively. However, due to the nature of the product there are precedence rules that must be observed. Such that Task A does not need any predecessors; task B requires task A to be completed. To start task C and task D. each require task B to be completed. Task must be completed prior to stating task E. Task F needs both task D and task Eto be completedFinally, task G can start only once task Fis completed.Given we apply the most remaining tasks rule for balancing the assembly line, with ties broken according to longest task time first, the tasks that will be assigned to the THIRD workstation areAlocal toy manufacturer is using a production line that runs 8 hours per day and produces a toy that requires a total of 7 tasks to be performied. The daily demand is 150 toys. Times of the tasks are 2.73, 2.01, 2.13, 2.0, 2.61, 2.71, and 2.95 minutes for A, B, C, D, E, F, and G, respectively. However, due to the nature of the product there are precedence rules that must be observed. Such that Task A does not need any predecessors; task B requires taskA to be completed. To start task Cand task D, each require task B to be completed. Task C must be completed prior to stating task E. Task F needs both task D and task Eto be completed. Finally, task G can start only once taskFis completed.What is the minimum number of workstations needed?Process D has five activities in a straight line. The cycle time for Activity 1 is 10 seconds, Activity2 is 35 seconds, Activity is 30 seconds, Activity4 is 80 seconds and Activity is 40 seconds. If activities 1, 2 and 3 are combined into one activity and assigned to one worker, and activities 4 and 5 are combined and assigned to second worker, the capacity of the system becomes ?
- A local toy manufacturer is using a production line that runs 8 hours per day and produces a toy that requires a total of 7 tasks to be performed . The daily demand is 120 toys. Times of the tasks are 2.73,2.01 1, 2.13, 2.0, 2.61, 2.71 , and 2.95 minutes for A ,B,C,D,E,F, , and G, respectively . However, due to the nature of product there are precedence rules that must be observed . Such that Task A does not need any predecessors ; task B requires task be completed. To start task C and task D, each require task B to be completed . Task C must be completed prior to stating task E. Task F needs both task D and task Eto be completed . Finally, task G can start only once task F is completed . What is the minimum number of workstations needed? a. 4 b. 5 c. 6 d. None of them e. 8A local toy manufacturer is using a production line that runs 8 hours per day and produces a toy that requires a total of 7 tasks to be performed . The daily demand is 100 toys . Times of the tasks are 2.73,2.01 ,2.13,2.0,2.61,2.71 and 2.95 minutes for A,B,C,D,E,F, and G, respectively . However , due to the nature of the product there are precedencerules that must be observed . Such that Task A does not need any predecessors ; task B requires task A to becompleted . To start task C and task Deach require task B to be completed . Task must be completed prior to stating task E. Task F needs both task and task E to be completed . Finally , task G can start only once task F is completed . Given we apply the most remaining tasks rule for balancing the assembly line , with ties broken according to longesttask time first , the tasks that will be assigned to the THIRD workstation are a. D and F b . None is the correct answer c. D only d. E only e. B, C , and DAn order for 100 of a product is processed on operation A and operation B. The setuptime on A is 50 minutes, and the run time per piece is 9 minutes. The setup time onB is 30 minutes, and the run time is 6 minutes per piece. It takes 20 minutes to movea lot between A and B. Since this is a rush order, it is given top priority (president’sedict) and is run as soon as it arrives at either workstation.It is decided to overlap the two operations and to split the lot of 100 into two lotsof 60 and 40. When the first lot is finished on operation A, it is moved to operation Bwhere it is set up and run. Meanwhile, operation A completes the balance of the 100units (40) and sends the units over to operation B. These 40 units should arrive asoperation B is completing the first batch of 60; thus, operation B can continue withoutinterruption until all 100 are completed.a. Calculate the total manufacturing lead time for operation A and for B withoutoverlapping.b. Calculate the manufacturing lead time…