An assembly line must be designed to produce 40 containers per hour. The following data give the necessary information Table 1 TASK IMMEDIATE PREDECESSOR TASK TIME (sec) A None 60 B A 12 C B 35 D A 55 E D 10 F E 50 G F, C 5 Draw the precedence diagram. Compute the cycle time (in seconds) to achieve the desired output rate. What is the theoretical minimum number of stations? Assign the tasks to the workstation? What is the efficiency of the line? Calculate the idle time
An assembly line must be designed to produce 40 containers per hour. The following data give the necessary information Table 1 TASK IMMEDIATE PREDECESSOR TASK TIME (sec) A None 60 B A 12 C B 35 D A 55 E D 10 F E 50 G F, C 5 Draw the precedence diagram. Compute the cycle time (in seconds) to achieve the desired output rate. What is the theoretical minimum number of stations? Assign the tasks to the workstation? What is the efficiency of the line? Calculate the idle time
Practical Management Science
6th Edition
ISBN:9781337406659
Author:WINSTON, Wayne L.
Publisher:WINSTON, Wayne L.
Chapter2: Introduction To Spreadsheet Modeling
Section: Chapter Questions
Problem 20P: Julie James is opening a lemonade stand. She believes the fixed cost per week of running the stand...
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An assembly line must be designed to produce 40 containers per hour. The following data give the necessary information
Table 1
TASK |
IMMEDIATE PREDECESSOR |
TASK TIME (sec) |
A |
None |
60 |
B |
A |
12 |
C |
B |
35 |
D |
A |
55 |
E |
D |
10 |
F |
E |
50 |
G |
F, C |
5 |
- Draw the precedence diagram.
- Compute the cycle time (in seconds) to achieve the desired output rate.
- What is the theoretical minimum number of stations?
- Assign the tasks to the workstation?
- What is the efficiency of the line?
- Calculate the idle time
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