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Consider the Following MOLP Graph the Feasible Region for This Problem and Compute the \mathrm{X}_{1}+4

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Essay

Consider the following MOLP:
 MAX: 3X1+4X2 MAX: 2X1+X2 Subject to: 6X1+13X27812X1+9X21088X1+10X280X1X20\begin{array}{ll}\text { MAX: } & 3 \mathrm{X}_{1}+4 \mathrm{X}_{2} \\\text { MAX: } & 2 \mathrm{X}_{1}+\mathrm{X}_{2} \\\text { Subject to: } & 6 \mathrm{X}_{1}+13 \mathrm{X}_{2} \leq 78 \\& 12 \mathrm{X}_{1}+9 \mathrm{X}_{2} \leq 108 \\& 8 \mathrm{X}_{1}+10 \mathrm{X}_{2} \leq 80 \\& \mathrm{X}_{1} \mathrm{X}_{2} \geq 0\end{array}
Graph the feasible region for this problem and compute the value of each objective at each extreme point. What are the solutions to each of the component LPs?
 Consider the following MOLP:   \begin{array}{ll} \text { MAX: } & 3 \mathrm{X}_{1}+4 \mathrm{X}_{2} \\ \text { MAX: } & 2 \mathrm{X}_{1}+\mathrm{X}_{2} \\ \text { Subject to: } & 6 \mathrm{X}_{1}+13 \mathrm{X}_{2} \leq 78 \\ & 12 \mathrm{X}_{1}+9 \mathrm{X}_{2} \leq 108 \\ & 8 \mathrm{X}_{1}+10 \mathrm{X}_{2} \leq 80 \\ & \mathrm{X}_{1} \mathrm{X}_{2} \geq 0 \end{array}   Graph the feasible region for this problem and compute the value of each objective at each extreme point. What are the solutions to each of the component LPs?


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