Use a graphing utility to graph the equation. y = x² - 6x + 5 -10 WW 10 -10 (a) (6, y) y = 5 (b) (x, 2.6) -5 X = -10- -10 5 y 10 W W -10 -5 -10 -5 5 (largest value) 10 X y (Enter your answers from smallest to largest.) (smallest value) 10 -10 -10 5 Use the trace feature of the graphing utility to approximate the unknown coordinate of each solution point accurate to two decimal places. (Hint: You may need to use the zoom feature of the graphing utility to obtain the required accuracy.) 5 X 10 10

Calculus For The Life Sciences
2nd Edition
ISBN:9780321964038
Author:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Publisher:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Chapter4: Calculating The Derivative
Section4.1: Techniques For Finding Derivatives
Problem 64E: Dogs Human Age From the data printed in the following table from the Minneapolis Star Tribune on...
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Use a graphing utility to graph the equation.
y = x² - 6x + 5
-10
WW
10
-10
(a) (6, y)
y = 5
(b) (x, 2.6)
-5
X =
-10-
-10
5
y
10
W W
-10
-5
-10
-5
5
(largest value)
10
X
y
(Enter your answers from smallest to largest.)
(smallest value)
10
-10
-10
5
Use the trace feature of the graphing utility to approximate the unknown coordinate of each solution point accurate to two decimal places. (Hint: You may need to use
the zoom feature of the graphing utility to obtain the required accuracy.)
5
X
10
10
Transcribed Image Text:Use a graphing utility to graph the equation. y = x² - 6x + 5 -10 WW 10 -10 (a) (6, y) y = 5 (b) (x, 2.6) -5 X = -10- -10 5 y 10 W W -10 -5 -10 -5 5 (largest value) 10 X y (Enter your answers from smallest to largest.) (smallest value) 10 -10 -10 5 Use the trace feature of the graphing utility to approximate the unknown coordinate of each solution point accurate to two decimal places. (Hint: You may need to use the zoom feature of the graphing utility to obtain the required accuracy.) 5 X 10 10
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