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You can think of the result in any:r one game as being Helena's marginal shooting percentage. Based on your previous answer, you can deduce that
You can think of the result in any:r one game as being Helena's marginal shooting percentage. Based on your previous answer, you can deduce that when Helena's marginal shooting percentage is below the averager the average must be V . You can now apply.r this analysis to production costs. For a U-shaped average total cost [- falling e, when the marginal cost curve is below the average total cost curve, the average total cost must be 7 .Also, when the marginal c: is above the average total cost curve, the average total cost must be V . Therefore, the marginal cost curve intersects the avera- . . st curve V . \fu can think of the result in any one game as being Helena's marginal shooting percentage. Based on your previous answer, you can deduce that ien Helena's marginal shooting percentage is below the average, the average must be falling u can now apply ysis to production costs. For a U-shaped average total cost (ATC) curve, when the marginal cost curve is below the average rising tal cost curve, th e total cost must be . Also, when the marginal cost curve is above the average total cost curve, the average tal cost must be . Therefore, the marginal cost curve intersects the average total cost curveYou can think of the result in any one game as being Helena's marginal shooting percentage. Based on yo an deduce that when the ATE is at 0 when Helena's marginal shooting percentage is below the average, the average must be V . at its minimum You can now applv this analysis to production costs. For a Ushaped average total cost (ATE) curve, when . . . is below the average at Its maXImum total cost curve, the average total cost must be V .Also, when the marginal cost curve is above rve, the average total cost must be V .Therefore, the marginal cost curve intersects the average total cost curve V
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