Suppose that it is given to you that f'(x) = (x+6)(10 - x)(x - 12) Then the first relative extremum (from the left) for f(x) occurs at x = 6 The function f(x) has a relative max at this point. The second relative extremum (from the left) for f(x) occurs at x = 10 The function f(x) has a relative min ▾ at this point. The third relative extremum (from the left) for f(x) occurs at x = 12 The function f(x) has a relative max at this point. The first inflection point (from the left) for f(x) occurs at x = The second inflection point (from the left) for f(x) occurs at x =

Functions and Change: A Modeling Approach to College Algebra (MindTap Course List)
6th Edition
ISBN:9781337111348
Author:Bruce Crauder, Benny Evans, Alan Noell
Publisher:Bruce Crauder, Benny Evans, Alan Noell
Chapter2: Graphical And Tabular Analysis
Section2.1: Tables And Trends
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Suppose that it is given to you that
f'(x) = (x+6)(10-x)(x-12)
-6
Then the first relative extremum (from the left) for f(x) occurs at x =
The function f(x) has a relative max at this point.
The second relative extremum (from the left) for f(x) occurs at x = 10
The function f(x) has a relative min at this point.
The third relative extremum (from the left) for f(x) occurs at x = 12
The function f(x) has a relative max
at this point.
The first inflection point (from the left) for f(x) occurs at x =
The second inflection point (from the left) for f(x) occurs at x =
Transcribed Image Text:Suppose that it is given to you that f'(x) = (x+6)(10-x)(x-12) -6 Then the first relative extremum (from the left) for f(x) occurs at x = The function f(x) has a relative max at this point. The second relative extremum (from the left) for f(x) occurs at x = 10 The function f(x) has a relative min at this point. The third relative extremum (from the left) for f(x) occurs at x = 12 The function f(x) has a relative max at this point. The first inflection point (from the left) for f(x) occurs at x = The second inflection point (from the left) for f(x) occurs at x =
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