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    Finite Mathematics
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    Exam 3: Linear Programming: a Geometric Approach
  5. Question
    Solve the Linear Programming Problem by the Method of Corners
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Solve the Linear Programming Problem by the Method of Corners

Question 188

Question 188

Multiple Choice

Solve the linear programming problem by the method of corners. Maximize Solve the linear programming problem by the method of corners. Maximize   subject to           A)  x = 30, y = 38, P = 392 B)  x = 20, y = 28, P = 344 C)  x = 10, y = 38, P = 412 D)  x = 30, y = 10, P = 300 subject to Solve the linear programming problem by the method of corners. Maximize   subject to           A)  x = 30, y = 38, P = 392 B)  x = 20, y = 28, P = 344 C)  x = 10, y = 38, P = 412 D)  x = 30, y = 10, P = 300 Solve the linear programming problem by the method of corners. Maximize   subject to           A)  x = 30, y = 38, P = 392 B)  x = 20, y = 28, P = 344 C)  x = 10, y = 38, P = 412 D)  x = 30, y = 10, P = 300 Solve the linear programming problem by the method of corners. Maximize   subject to           A)  x = 30, y = 38, P = 392 B)  x = 20, y = 28, P = 344 C)  x = 10, y = 38, P = 412 D)  x = 30, y = 10, P = 300 Solve the linear programming problem by the method of corners. Maximize   subject to           A)  x = 30, y = 38, P = 392 B)  x = 20, y = 28, P = 344 C)  x = 10, y = 38, P = 412 D)  x = 30, y = 10, P = 300 Solve the linear programming problem by the method of corners. Maximize   subject to           A)  x = 30, y = 38, P = 392 B)  x = 20, y = 28, P = 344 C)  x = 10, y = 38, P = 412 D)  x = 30, y = 10, P = 300


A) x = 30, y = 38, P = 392
B) x = 20, y = 28, P = 344
C) x = 10, y = 38, P = 412
D) x = 30, y = 10, P = 300

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