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Q: 3. Why first derivative is zero at local maximum and local minimum of function in an open interval?
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Q: What function should be used to minimize the distance between, y = 3x2, and the point (0, 2)?
A: y=3x2, 0, 2.
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A: perpendicular trajectory
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A: see 2nd step
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Q: 7. When does the second derivative test indicate that a relative extrema is a minimum?
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Q: Determine if the critical points of the function f ( x ) = x³ + x² - x - 2 are maximum or minimum…
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Q: the correct formula for marginal profit is
A: Given the correct formula for marginal profit is
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Q: find the critical point.
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Q: Find the marginal revenue function.
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Q: find any locl maximum and locl minimum values by using first derivative: f(x)-x-2x
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Q: Explain how to determine Partial derivatives for x-value ?
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Q: Describe how you would use the second derivative to determine a local minimum or maximum.
A: Given data is: How you would use the second derivative to determine a local minimum or maximum
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Given the function f(x)=x^(3)-x^(2), a
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- How do I solve the derivative for x to find the critical points and identify the absolute minimum and maximum?For bubble 4, Please *CLEARLY* point out what the coordinate points are of the extreme and *CLEARLY* label each point as the minimum or maximum, using the second derivative test.I do not understand how to parameterize the function using critical points.
- A rectangular fence is to be constructed with one of its face adjacent to an existing wall. Given that the available materials for the fence are good for 24m, what dimensions will produce a maximum area for the fence? What is the equation that will give us the function's critical point/sDescribe how you would use the second derivative to determine a local minimum or maximum.Explain how the First Derivative Test determines whetherƒ(x) = x2 has a local maximum or local minimum at the critical point x = 0.
- the value of x at which the FOC is satisfied give us the ........(maximum/minimum) of the function because the second derivative is ..........(positive/negative).Also calculate the maximum profit.A piece of wire, 370 cm long, is to be bent into an isosceles triangle. What should the exact dimensions (do NOT round) of the triangle be in order to maximize its area? Use the First and Second Derivative Tests