Q3. The following activities and times (in minutes) were recorded for a mold operator: • Removes molded piece from die:0.6 ● Walks 10 ft to a workbench:0.2 . Boxes widget and places on conveyor: 1.0 Walks back to molder:0.1 · . Blows out dirt from mold:0.4 Sprays oil into mold, pushes "GO":0.3 Mold cycles automatically:4.0 The cycle the repeats itself. The operator is paid $ 15.00/h and it costs $ 22.00/h to run the molder. What is the optimum number of machines that can be assigned to the operator the widgets at lowest cost?
Q3. The following activities and times (in minutes) were recorded for a mold operator: • Removes molded piece from die:0.6 ● Walks 10 ft to a workbench:0.2 . Boxes widget and places on conveyor: 1.0 Walks back to molder:0.1 · . Blows out dirt from mold:0.4 Sprays oil into mold, pushes "GO":0.3 Mold cycles automatically:4.0 The cycle the repeats itself. The operator is paid $ 15.00/h and it costs $ 22.00/h to run the molder. What is the optimum number of machines that can be assigned to the operator the widgets at lowest cost?
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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Transcribed Image Text:Q3. The following activities and times (in minutes) were recorded for a mold operator:
.
Removes molded piece from die:0.6
Walks 10 ft to a workbench:0.2
·
●
Boxes widget and places on conveyor: 1.0
Walks back to molder:0.1
.
.
Blows out dirt from mold:0.4
Sprays oil into mold, pushes "GO":0.3
Mold cycles automatically:4.0
The cycle the repeats itself. The operator is paid $ 15.00/h and it costs $ 22.00/h to run the molder.
What is the optimum number of machines that can be assigned to the operator the widgets at lowest
cost?
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