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Photon Technologies, Inc., a manufacturer of batteries for mobile phones, signed a contract with a large electronics manufacturer to produce three models of lithium-ion battery

Photon Technologies, Inc., a manufacturer of batteries for mobile phones, signed a contract with a large electronics manufacturer to produce three models of lithium-ion battery packs for a new line of phones. The contract calls for the following: Battery Pack Production Quantity PT-100 PT-200 PT-300 200,000 100,000 150,000 Photon Technologies can manufacture the battery packs at manufacturing plants located in the Philippines and Mexico. The unit cost of the battery packs differs at the two plants because of differences in production equipment and wage rates. The unit costs for each battery pack at each manufacturing plant are as follows: Plant Product PT-100 Philippines Mexico 30.95 $0.98 PT-200 PT-300 $0.98 $1,34 $1.06 $1.15 The PT-100 and PT-200 battery packs are produced using similar production equipment available at both plants. However, each plant has a limited capacity for the total number of PT-100 and PT-200 battery packs produced. The combined PT-100 and PT-200 production capacities are 175,000 units at the Philippines plant and 160,000 units at the Mexico plant. The PT-300 production capacities are 75,000 units at the Philippines plant and 100,000 units at the Mexico plant. The cost of shipping from the Philippines plant is $0.18 per unit, and the cost of shipping from the Mexico plant is $0.10 per unit. (a) Develop a linear program that Photon Technologies can use to determine how many units of each battery pack to produce at each plant to minimize the total production and shipping cost associated with the new contract. If the constraint is one, enter "1". If the amount is zero, enter "0" Let P1 P2 P3 M1 M2 number of PT-100 battery packs produced at the Philippines plant number of PT-200 battery packs produced at the Philippines plant number of PT-300 battery packs produced at the Philippines plant number of PT-100 battery packs produced at the Mexico plant number of PT-200 battery packs produced at the Mexico plant Min s.t. PL + P2+ P3 + MI+ M2 + M3 1 P1+ 0 P2+ 0 P3+ 1 ML + 0 M2 + 0 P1+ 1 P2 + 0 P3+ 0 MI+ 1 M2 + 0 P1+ 0 P2+ 1 P3+ 0 M1 + 0 M2 + 0 M3- 1 M3- 0 M3 20000c Production PT-100 100000 Production PT-200 1 P+ 1 P2 + 0 P3+ 0 M1 + 0 M2 + 0 P1 + 0 P2 + 0 P3+ 1 M1+ 1 M2 + 0 P1 + 0 P2+ 1 P3 + 0 M1 + 0 M2 + 15000c Production PT-300 0 M3 175000 Capacity Phi PT-100 & 200 0 M3 S 16000c Capacity Mex PT-100 & 200 10 M3 S 75000 Capacity Phi PT-300 o P1 + 0 P2 + 0 P3+ 0 MI+ 0 M2+ 1 M3100000 Capacity Mex PT-300 P1, P2, P3, M1, M2, M3 201 (b) Solve the linear program developed in part (a), to determine the optimal production plan. If the amount is zero, enter "0". Qty Produced PT-100 PT-200 PT-300 Mexico 10000C 0 50000 100000 Total Cost $ (c) Use sensitivity analysis to determine how much the production and/or shipping cost per unit would have to change to produce additional units of the PT-100 in the Philippines plant. If required, round your answer to two decimal digits. At least $ .05 unit. (d) Use sensitivity analysis to determine how much the production and/or shipping cost per unit would have to change to produce additional units of the PT-200 in the Mexico plant. If required, round your answer to two decimal digits. At least $ 05 unit

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