Consider f(x) I Find the first derivative: f'(x) = List all critical points: x = The...
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Consider f(x) I Find the first derivative: f'(x) = List all critical points: x = The function is increasing in the region The function is decreasing in the region Note: Only list the x-values of the critical points, and separate them with commas. I The Local Minimum for f(x) are (Note: List the coordinate points, with an x and y values. Separate multiple points with commas. If there are no local minimum, write none): The Local Maximum for f(x) are (Note: List the coordinate points, with anx and y values. Separate multiple points with commas. If there are no local maximum, write none): Find the second derivative: f" (x) = The inflection points for f(x) are (Note: List the coordinate points, with an x and y values. Separate multiple points with commas): The function is concave up in the region The function is concave down in the region Consider f(x) I Find the first derivative: f'(x) = List all critical points: x = The function is increasing in the region The function is decreasing in the region Note: Only list the x-values of the critical points, and separate them with commas. I The Local Minimum for f(x) are (Note: List the coordinate points, with an x and y values. Separate multiple points with commas. If there are no local minimum, write none): The Local Maximum for f(x) are (Note: List the coordinate points, with anx and y values. Separate multiple points with commas. If there are no local maximum, write none): Find the second derivative: f" (x) = The inflection points for f(x) are (Note: List the coordinate points, with an x and y values. Separate multiple points with commas): The function is concave up in the region The function is concave down in the region
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