The Pullman Mfg., Inc. three-station work cell illustrated in the figure below has two machines at station 1 in parallel. (The product needs to go through only one of the two machines before proceeding to station 2.) Q 12 min/unit Station 1 Machine A Station 1 Machine B 12 min/unit Station 2 12 min/unit Station 3 2 min/unit The manager, Ms. Hartley, has asked you to evaluate the system if she adds a parallel machine at station 2. a) The throughput time of the new work cell is 26 minutes (enter your response as a whole number). b) The bottleneck time of the new work cell is 6 minutes per unit (enter your response as a whole number). c) If the firm operates 10 hours per day, 6 days per week, the weekly capacity of the work cell with the second machine at workstation 2 is whole number). units (enter your response as a

Practical Management Science
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Author:WINSTON, Wayne L.
Publisher:WINSTON, Wayne L.
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The Pullman Mfg., Inc. three-station work cell illustrated in the figure below has two machines at station 1 in parallel. (The product needs to go through only one of the two machines before proceeding to station 2.)

[Diagram Description: A flowchart is presented with three stations. Station 1 has two parallel machines, Machine A and Machine B, each taking 12 minutes per unit. After Station 1, the workflow converges to Station 2, which takes 12 minutes per unit. Finally, the flow goes to Station 3, which takes 2 minutes per unit.]

The manager, Ms. Hartley, has asked you to evaluate the system if she adds a parallel machine at station 2.

a) The throughput time of the new work cell is [26] minutes (enter your response as a whole number).

b) The bottleneck time of the new work cell is [6] minutes per unit (enter your response as a whole number).

c) If the firm operates 10 hours per day, 6 days per week, the weekly capacity of the work cell with the second machine at workstation 2 is [1800] units (enter your response as a whole number).
Transcribed Image Text:The Pullman Mfg., Inc. three-station work cell illustrated in the figure below has two machines at station 1 in parallel. (The product needs to go through only one of the two machines before proceeding to station 2.) [Diagram Description: A flowchart is presented with three stations. Station 1 has two parallel machines, Machine A and Machine B, each taking 12 minutes per unit. After Station 1, the workflow converges to Station 2, which takes 12 minutes per unit. Finally, the flow goes to Station 3, which takes 2 minutes per unit.] The manager, Ms. Hartley, has asked you to evaluate the system if she adds a parallel machine at station 2. a) The throughput time of the new work cell is [26] minutes (enter your response as a whole number). b) The bottleneck time of the new work cell is [6] minutes per unit (enter your response as a whole number). c) If the firm operates 10 hours per day, 6 days per week, the weekly capacity of the work cell with the second machine at workstation 2 is [1800] units (enter your response as a whole number).
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