For the graph of a function y=f(x) shown to the right, find the absolute maximum and the absolute minimum, if they exist. Identify any local maxima or local minima Select the correct answer below and, if necessary, fill in the answer boxes to complete your choice. OA. The absolute maximum of y=f(x) is f(- (Type integers or simplified fractions.) OB. There is no absolute maximum for y=f(x) Select the correct answer below and, if necessary, fill in the answer boxes to complete your choice. OA. The absolute minimum of yfox) is f(-. (Type integers or simplified fractions.) OB. There is no absolute minimum for y=f(x) Select the correct answer below and, if necessary, fill in the answer boxes to complete your choice. OA. The local maximum of y=f(x) is f (Type integers or simplified fractions.) OB. The local maxima of y=fox) are f(and (- (Use ascending order with respect to x. Type integers or simplified fractions.) OC. There is no local maximum for y-fox) Select the correct answer below and, if necessary, fill in the answer boxes to complete your choice. OA. The local minimum of y=f(x) is f (Type integers or simplified fractions) OB. The local minima of y=f(x) are f(and f(- (Use ascending order with respect to x. Type integers or simplified fractions.) OC. There is no local minimum for y=f(x)

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For the graph of a function y=f(x) shown to the right, find the absolute maximum and the absolute minimum, if they exist. Identify any local maxima or local minima.
Select the correct answer below and, if necessary, fill in the answer boxes to complete your choice.
O A. The absolute maximum of y=f(x) is f() = -
(Type integers or simplified fractions.)
O B. There is no absolute maximum for y=f(x).
Select the correct answer below and, if necessary, fill in the answer boxes to complete your choice.
OA. The absolute minimum of y=f(x) is f()=1.
(Type integers or simplified fractions.)
O B. There is no absolute minimum for y=f(x).
Select the correct answer below and, if necessary, fill in the answer boxes to complete your choice.
OA. The local maximum of y=f(x) is f(-·
=
(Type integers or simplified fractions.)
OB. The local maxima of y = f(x) are f() = and f(1) = -
(Use ascending order with respect to x. Type integers or simplified fractions.)
OC. There is no local maximum for y=f(x).
Select the correct answer below and, if necessary, fill in the answer boxes to complete your choice.
OA. The local minimum of y=f(x) is f() =.
(Type integers or simplified fractions.)
OB. The local minima of y=f(x) are f()= and f()=-
(Use ascending order with respect to x. Type integers or simplified fractions.)
OC. There is no local minimum for y=f(x).
2
4-
(-2,2)
(2,4)
(3,3)
(0,1)
Q
Transcribed Image Text:For the graph of a function y=f(x) shown to the right, find the absolute maximum and the absolute minimum, if they exist. Identify any local maxima or local minima. Select the correct answer below and, if necessary, fill in the answer boxes to complete your choice. O A. The absolute maximum of y=f(x) is f() = - (Type integers or simplified fractions.) O B. There is no absolute maximum for y=f(x). Select the correct answer below and, if necessary, fill in the answer boxes to complete your choice. OA. The absolute minimum of y=f(x) is f()=1. (Type integers or simplified fractions.) O B. There is no absolute minimum for y=f(x). Select the correct answer below and, if necessary, fill in the answer boxes to complete your choice. OA. The local maximum of y=f(x) is f(-· = (Type integers or simplified fractions.) OB. The local maxima of y = f(x) are f() = and f(1) = - (Use ascending order with respect to x. Type integers or simplified fractions.) OC. There is no local maximum for y=f(x). Select the correct answer below and, if necessary, fill in the answer boxes to complete your choice. OA. The local minimum of y=f(x) is f() =. (Type integers or simplified fractions.) OB. The local minima of y=f(x) are f()= and f()=- (Use ascending order with respect to x. Type integers or simplified fractions.) OC. There is no local minimum for y=f(x). 2 4- (-2,2) (2,4) (3,3) (0,1) Q
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