90 Constraint 3А, В > 0Figure 2.22 shows a graph of the constraint lines.a. Place a number (1, 2, or 3) next to each constraint line to identify which constraint itrepresents.b. Shade in the...


21. Consider the following linear program:<br>Мax<br>2A + ЗВ<br>s.t.<br>5A + 5B < 400 Constraint 1<br>- 1A + 1B < 10 Constraint 2<br>1A + 3B > 90 Constraint 3<br>А, В > 0<br>Figure 2.22 shows a graph of the constraint lines.<br>a. Place a number (1, 2, or 3) next to each constraint line to identify which constraint it<br>represents.<br>b. Shade in the feasible region on the graph.<br>c. Identify the optimal extreme point. What is the optimal solution?<br>d. Which constraints are binding? Explain.<br>How much slack or surplus is associated with the nonbinding constraint?<br>е.<br>FIGURE 2.22 GRAPH OF THE CONSTRAINT LINES FOR EXERCISE 21<br>B<br>90<br>80<br>70<br>60<br>50 -<br>40<br>30<br>20<br>10<br>10<br>30<br>40<br>50<br>60<br>70<br>80<br>90<br>A<br>100<br>20<br>

Extracted text: 21. Consider the following linear program: Мax 2A + ЗВ s.t. 5A + 5B < 400="" constraint="" 1="" -="" 1a="" +="" 1b="">< 10="" constraint="" 2="" 1a="" +="" 3b=""> 90 Constraint 3 А, В > 0 Figure 2.22 shows a graph of the constraint lines. a. Place a number (1, 2, or 3) next to each constraint line to identify which constraint it represents. b. Shade in the feasible region on the graph. c. Identify the optimal extreme point. What is the optimal solution? d. Which constraints are binding? Explain. How much slack or surplus is associated with the nonbinding constraint? е. FIGURE 2.22 GRAPH OF THE CONSTRAINT LINES FOR EXERCISE 21 B 90 80 70 60 50 - 40 30 20 10 10 30 40 50 60 70 80 90 A 100 20

Jun 04, 2022
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