2. Two products are manufactured in a machining center. The productions times per unit of products 1 and 2 are 10 and 12 minutes, respectively. The total regular machine time is 2500 minutes per day. In anyone day, the manufacturer can produce between 150 and 200 units of product 1, but no more than 45 units of product 2. Overtime may be used to meet the demand at an additional cost of $.50 per minute. Assuming that the unit profits for products 1 and 2 are $6.00 and $7.50, respectively, formulate the problem as an LP model, then solve it using TORA to determine the optimum production level for each product as well as any overtime needed in the center.
2. Two products are manufactured in a machining center. The productions times per unit of products 1 and 2 are 10 and 12 minutes, respectively. The total regular machine time is 2500 minutes per day. In anyone day, the manufacturer can produce between 150 and 200 units of product 1, but no more than 45 units of product 2. Overtime may be used to meet the demand at an additional cost of $.50 per minute. Assuming that the unit profits for products 1 and 2 are $6.00 and $7.50, respectively, formulate the problem as an LP model, then solve it using TORA to determine the optimum production level for each product as well as any overtime needed in the center.
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:2. Two products are manufactured in a machining center. The productions times per unit of products 1
and 2 are 10 and 12 minutes, respectively. The total regular machine time is 2500 minutes per day. In
anyone day, the manufacturer can produce between 150 and 200 units of product 1, but no more than
45 units of product 2. Overtime may be used to meet the demand at an additional cost of $.50 per
minute. Assuming that the unit profits for products 1 and 2 are $6.00 and $7.50, respectively, formulate
the problem as an LP model, then solve it using TORA to determine the optimum production level
for each product as well as any overtime needed in the center.
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