QUESTION 3: A company products two models of computer (1 and 2). Each computer type 1 yielda S40.00 in profits and cach computer model 2 provides $20.00. Each of the computer goes through two assembly areas. The following table provides processing times per unit (in minutes) as well as total available processing times per department: Computer Dept. A Dept. B 12 2 total time per day 216 384 Sales commitments require at least 5 computers type 1 and 10 computers type B to be made per day. - Define the decision variables. Formulate this problem as an LP.

Linear Algebra: A Modern Introduction
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ISBN:9781285463247
Author:David Poole
Publisher:David Poole
Chapter2: Systems Of Linear Equations
Section2.4: Applications
Problem 23EQ: 23. Consider a simple economy with just two industries: farming and manufacturing. Farming consumes...
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Linear Programming
QUESTION 3:
A company products two models of computer (1 and 2). Each computer type 1 yields $40.00 un profits and
each computer model 2 provides $20.00. Each of the computer goes through two assembly areas. The
following table provides processing times per unit (in minutes) as well as total available processing times
per department
Dept. A
Dept B
12
Computer
2
6
total time per day
216
384
Sales commitments require at least 5 computers type 1 and 10 computers type B to be made per day.
Define the decision variables
Formulate this problem as an LP.
Transcribed Image Text:Linear Programming QUESTION 3: A company products two models of computer (1 and 2). Each computer type 1 yields $40.00 un profits and each computer model 2 provides $20.00. Each of the computer goes through two assembly areas. The following table provides processing times per unit (in minutes) as well as total available processing times per department Dept. A Dept B 12 Computer 2 6 total time per day 216 384 Sales commitments require at least 5 computers type 1 and 10 computers type B to be made per day. Define the decision variables Formulate this problem as an LP.
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