The car A has a forward speed of 21 km/h and is accelerating at 3.4 m/s². Determine the velocity and acceleration of the car relative t observer B, who rides in a nonrotating chair on the Ferris wheel. The angular rate 2 = 4.0 rev/min of the Ferris wheel is constant. R= 8.6 ml Answers: VA/B = ( aA/B = ( i 22=4.0 rev/min B 2.919 4.621 36° y i+ i i+ 0.887 2.117 j) m/s² j) m/s

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter3: Motion In Two Dimensions
Section: Chapter Questions
Problem 30P: A point on a rotating turntable 20.0 cm from the center accelerates from rest to a final speed of...
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Your answer is partially correct.
The car A has a forward speed of 21 km/h and is accelerating at 3.4 m/s². Determine the velocity and acceleration of the car relative to
observer B, who rides in a nonrotating chair on the Ferris wheel. The angular rate Q2 = 4.0 rev/min of the Ferris wheel is constant.
R= 8.6 m
Answers:
VA/B = (
aA/B = (
i
22 4.0 rev/min
B
2.919
4.621
36°
y
i+ i
i+ 0.887
2.117
j) m/s²
j) m/s
Transcribed Image Text:Your answer is partially correct. The car A has a forward speed of 21 km/h and is accelerating at 3.4 m/s². Determine the velocity and acceleration of the car relative to observer B, who rides in a nonrotating chair on the Ferris wheel. The angular rate Q2 = 4.0 rev/min of the Ferris wheel is constant. R= 8.6 m Answers: VA/B = ( aA/B = ( i 22 4.0 rev/min B 2.919 4.621 36° y i+ i i+ 0.887 2.117 j) m/s² j) m/s
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