The graph of the second derivative, f"(x), is given. Determine the x-coordinates of all points of inflection of f(x), if any. (Assume that f(x) is defined and continuous everywhere in [-3, 3].) [HINT: Remember that a point of inflection of f corresponds to a point at which f" changes sign from positive to negative or vice versa. This could be a point where its graph crosses the x-axis or a point where its graph is broken: positive on one side of the break and negative on the other.] (Enter your answers as a comma-separated list. If there are no points of inflection, enter DNE.)

College Algebra
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ISBN:9781938168383
Author:Jay Abramson
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Chapter3: Functions
Section3.3: Rates Of Change And Behavior Of Graphs
Problem 2SE: If a functionfis increasing on (a,b) and decreasing on (b,c) , then what can be said about the local...
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The graph of the second derivative, f"(x), is given. Determine the x-coordinates of all points of inflection of f(x), if any. (Assume that f(x) is defined and continuous everywhere in [-3, 3].) [HINT:
Remember that a point of inflection of f corresponds to a point at which f" changes sign from positive to negative or vice versa. This could be a point where its graph crosses the x-axis or a point
where its graph is broken: positive on one side of the break and negative on the other.] (Enter your answers as a comma-separated list. If there are no points of inflection, enter DNE.)
y
-3
-2
-1
3
X =
Transcribed Image Text:The graph of the second derivative, f"(x), is given. Determine the x-coordinates of all points of inflection of f(x), if any. (Assume that f(x) is defined and continuous everywhere in [-3, 3].) [HINT: Remember that a point of inflection of f corresponds to a point at which f" changes sign from positive to negative or vice versa. This could be a point where its graph crosses the x-axis or a point where its graph is broken: positive on one side of the break and negative on the other.] (Enter your answers as a comma-separated list. If there are no points of inflection, enter DNE.) y -3 -2 -1 3 X =
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