According to data, the accident rate as a function of the age of the driver in years x can be approximated by the function f(x) = 46.5-2.26x+0.0298x² for 16 ≤x≤ 85. Find the age at which the accident rate is a minimum and the minimum rate. How is the age determined for the age at which the accident rate is a minimum? OA. Substitute 0 for x and solve for f(x). OB. Determine the x-value of the vertex. O C. Determine the y-value of the vertex. D. Substitute 16 for x and solve for f(x) because the minimum value of the function always occurs at the minimum value of x in the interval.

Algebra and Trigonometry (6th Edition)
6th Edition
ISBN:9780134463216
Author:Robert F. Blitzer
Publisher:Robert F. Blitzer
ChapterP: Prerequisites: Fundamental Concepts Of Algebra
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According to data, the accident rate as a function of the age of the driver in years x can be approximated by the function
f(x) = 46.5-2.26x +0.0298x² for 16 ≤x≤ 85. Find the age at which the accident rate is a minimum and the minimum rate.
How is the age determined for the age at which the accident rate is a minimum?
OA. Substitute 0 for x and solve for f(x).
OB. Determine the x-value of the vertex.
-O C. Determine the y-value of the vertex.
OD. Substitute 16 for x and solve for f(x) because the minimum value of the function always occurs at the minimum value of x in the interval.
Transcribed Image Text:According to data, the accident rate as a function of the age of the driver in years x can be approximated by the function f(x) = 46.5-2.26x +0.0298x² for 16 ≤x≤ 85. Find the age at which the accident rate is a minimum and the minimum rate. How is the age determined for the age at which the accident rate is a minimum? OA. Substitute 0 for x and solve for f(x). OB. Determine the x-value of the vertex. -O C. Determine the y-value of the vertex. OD. Substitute 16 for x and solve for f(x) because the minimum value of the function always occurs at the minimum value of x in the interval.
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