Consider the following linear programming problem: Maximize Z = Z = 900 x x + 800...
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Consider the following linear programming problem: Maximize Z = Z = 900 x x + 800 y y (profit in S) subject to 3 x + 2 y ≤ 18 3 x + 2 y ≤ 18 x + 2 y ≤ 10x + 2y ≤ 10y≤ 4 y ≤ 4x, y ≥0x, y20 B) Identify the optimal solution. How much is the maximum profit? x = 10, y = 0 x = 10, y = 0 is the optimal solution, and the maximum profit is $9000 x = 4, y = 3x = 4, y = 3 is the optimal solution, and the maximum profit is $6000 x = 6, y = 0x = 6, y = 0 is the optimal solution, and the maximum profit is $5400 x = 2, y = 4 x = 2, y = 4 is the optimal solution, and the maximum profit is $5000 x = 0, y = 5 x = 0, y = 5 is the optimal solution, and the maximum profit is $4000 x = 0, y = 4 x = 0, y = 4 is the optimal solution, and the maximum profit is $3200 Consider the following linear programming problem: Maximize Z = Z = 900 x x + 800 y y (profit in S) subject to 3 x + 2 y ≤ 18 3 x + 2 y ≤ 18 x + 2 y ≤ 10x + 2y ≤ 10y≤ 4 y ≤ 4x, y ≥0x, y20 B) Identify the optimal solution. How much is the maximum profit? x = 10, y = 0 x = 10, y = 0 is the optimal solution, and the maximum profit is $9000 x = 4, y = 3x = 4, y = 3 is the optimal solution, and the maximum profit is $6000 x = 6, y = 0x = 6, y = 0 is the optimal solution, and the maximum profit is $5400 x = 2, y = 4 x = 2, y = 4 is the optimal solution, and the maximum profit is $5000 x = 0, y = 5 x = 0, y = 5 is the optimal solution, and the maximum profit is $4000 x = 0, y = 4 x = 0, y = 4 is the optimal solution, and the maximum profit is $3200
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Related Book For
Finite Mathematics and Its Applications
ISBN: 978-0134768632
12th edition
Authors: Larry J. Goldstein, David I. Schneider, Martha J. Siegel, Steven Hair
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