Problem. A garment factory manufactures men's shirts and women's blouses. The production process includes cutting, sewing, and packaging. The factory employs 25 workers in the cutting department, 35 workers in the sewing department, and 5 workers in the packaging department. Each employee works an 8-hour shift per day for 5 days a week. The following table gives the time requirements and profit per unit for the two garments: 田 Garment Shirts Blouses Cutting 20 60 Minutes per unit Sewing 70 60 Packaging 12 14 Profit/unit Php 80.00 Php 120.00 Determine the optimal weekly production schedule for the garment factory.

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ISBN:9780470458365
Author:Erwin Kreyszig
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Chapter2: Second-order Linear Odes
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Problem. A garment factory manufactures men's shirts and women's blouses. The production
process includes cutting, sewing, and packaging. The factory employs 25 workers in the cutting
department, 35 workers in the sewing department, and 5 workers in the packaging department.
Each employee works an 8-hour shift per day for 5 days a week. The following table gives the
time requirements and profit per unit for the two garments:
Garment
Shirts
Cutting
20
Minutes per unit
Sewing
70
Packaging
12
Profit/unit
60
Php 80.00
Php 120.00
Blouses
60
14
Determine the optimal weekly production schedule for the garment factory.
Transcribed Image Text:Problem. A garment factory manufactures men's shirts and women's blouses. The production process includes cutting, sewing, and packaging. The factory employs 25 workers in the cutting department, 35 workers in the sewing department, and 5 workers in the packaging department. Each employee works an 8-hour shift per day for 5 days a week. The following table gives the time requirements and profit per unit for the two garments: Garment Shirts Cutting 20 Minutes per unit Sewing 70 Packaging 12 Profit/unit 60 Php 80.00 Php 120.00 Blouses 60 14 Determine the optimal weekly production schedule for the garment factory.
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