The three-station work cell at Pullman Mfg., Inc. is illustrated in the figure b parallel (i.e., the product needs to go through only one of the two machine. 20 min/unit

Practical Management Science
6th Edition
ISBN:9781337406659
Author:WINSTON, Wayne L.
Publisher:WINSTON, Wayne L.
Chapter12: Queueing Models
Section: Chapter Questions
Problem 59P
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The three-station work cell at Pullman Mfg., Inc. is illustrated in the figure below. It has two machines at station 1 in
parallel (i.e., the product needs to go through only one of the two machines before proceeding to station 2).
20 min/unit
Station 1
Machine A
Station 1
Machine B
20 min/unit
Station 2
12 min/unit
b) The bottleneck time of this work cell is
number).
Station 3
6 min/unit
a) The throughput time is minutes (enter your response as a whole number).
minutes per unit (enter your response as a whole
c)
is the bottleneck station.
d) If the firm operates 8 hours per day, 6 days per week, the weekly capacity of this work cell is
units (enter your response as a whole number).
Transcribed Image Text:The three-station work cell at Pullman Mfg., Inc. is illustrated in the figure below. It has two machines at station 1 in parallel (i.e., the product needs to go through only one of the two machines before proceeding to station 2). 20 min/unit Station 1 Machine A Station 1 Machine B 20 min/unit Station 2 12 min/unit b) The bottleneck time of this work cell is number). Station 3 6 min/unit a) The throughput time is minutes (enter your response as a whole number). minutes per unit (enter your response as a whole c) is the bottleneck station. d) If the firm operates 8 hours per day, 6 days per week, the weekly capacity of this work cell is units (enter your response as a whole number).
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