The graph of the velocity (in km/h) of a car that is accelerating is shown in the figure, where t is measured in seconds. V v (km/h) ave 60 40 20 6 12 18 (in km/h) of the car during the first 18 seconds. ave (a) Use the midpoint rule with n = 3 to estimate the average velocity v km/h t (seconds) (b) At what time t (in s) was the instantaneous velocity equal to the average velocity? (Round your answer to one decimal place.) t = S

Advanced Engineering Mathematics
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ISBN:9780470458365
Author:Erwin Kreyszig
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Chapter2: Second-order Linear Odes
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The graph of the velocity (in km/h) of a car that is accelerating is shown in the figure, where t is measured in seconds.
V
v (km/h)
ave
60
40
20
6
12
18
(in km/h) of the car during the first 18 seconds.
ave
(a) Use the midpoint rule with n = 3 to estimate the average velocity v
km/h
t (seconds)
(b) At what time t (in s) was the instantaneous velocity equal to the average velocity? (Round your answer to one decimal place.)
t =
S
Transcribed Image Text:The graph of the velocity (in km/h) of a car that is accelerating is shown in the figure, where t is measured in seconds. V v (km/h) ave 60 40 20 6 12 18 (in km/h) of the car during the first 18 seconds. ave (a) Use the midpoint rule with n = 3 to estimate the average velocity v km/h t (seconds) (b) At what time t (in s) was the instantaneous velocity equal to the average velocity? (Round your answer to one decimal place.) t = S
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