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-2 1.0 1,0 16 This feasible region is bounded O. Its corner points are (5,8), (10,3), (4,0). Suppose we want to maximize the profit equation
-2 1.0 1,0 16 This feasible region is bounded O. Its corner points are (5,8), (10,3), (4,0). Suppose we want to maximize the profit equation p = 3x + y. The corner points yield the profit values of (Enter the profits as a comma separated list.) Thus, optimal production is at point and the optimal profit is Suppose we want to maximize the profit equation p2 = x + 3y. The corner points yield the profit values of . Thus, optimal production is at point and the optimal profit is This feasible region is 7. Its corner points are (5,8),(10,3),(4,0). Suppose we want to maximize the profit equation p1=3x+y. The corner points yield the profit values of . (Enter the profes as a comma separated list.) Thus, optimal production is at point and the optimal profic is Suppose we want to maximize the profit equation p2=x+3y. The corner points yield the profit values of . Thus, optimal production is at point and the optimal protit is
-2 1.0 1,0 16 This feasible region is bounded O. Its corner points are (5,8), (10,3), (4,0). Suppose we want to maximize the profit equation p = 3x + y. The corner points yield the profit values of (Enter the profits as a comma separated list.) Thus, optimal production is at point and the optimal profit is Suppose we want to maximize the profit equation p2 = x + 3y. The corner points yield the profit values of . Thus, optimal production is at point and the optimal profit is
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