a. The platform is rotating such that, at any instant, its angular position i: 0 (t)=2t¹5 rad, where t is in seconds. A ball rolls outward so that its position is r(t) = 0.7t³ m. What is the magnitude of the velocity of the ball when t = 2.4 s. Give your answer with 2 decimals. b. Be careful, you have new numbers, you need to recalculate r dot, r dot dot, theta dot and theta dot dot. The platform is rotating such that, at any instant, its angular position is 0 (t)=1t¹.5 rad, where t is in seconds. A ball rolls outward so that its position is r(t) = 0.5t³ m. 0.0 What is the magnitude of the acceleration of the ball when t-2.1 s. Give your answer with 2 decimals.

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter12: Rotation I: Kinematics And Dynamics
Section: Chapter Questions
Problem 21PQ
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a.
The platform is rotating such that, at any instant, its angular position i:
0 (t)=2t¹-5 rad, where t is in seconds. A ball rolls outward so that its
position is r(t) = 0.7t³ m.
What is the magnitude of the velocity of the ball when t = 2.4 s.
Give your answer with 2 decimals.
b.
Be careful, you have new numbers, you need to recalculate r dot, r dot
dot, theta dot and theta dot dot.
The platform is rotating such that, at any instant, its angular position is
0 (t)=1t¹-5 rad, where t is in seconds. A ball rolls outward so that its
position is r(t) = 0.5t³ m.
What is the magnitude of the acceleration of the ball when t = 2.1 s.
Give your answer with 2 decimals.
Transcribed Image Text:a. The platform is rotating such that, at any instant, its angular position i: 0 (t)=2t¹-5 rad, where t is in seconds. A ball rolls outward so that its position is r(t) = 0.7t³ m. What is the magnitude of the velocity of the ball when t = 2.4 s. Give your answer with 2 decimals. b. Be careful, you have new numbers, you need to recalculate r dot, r dot dot, theta dot and theta dot dot. The platform is rotating such that, at any instant, its angular position is 0 (t)=1t¹-5 rad, where t is in seconds. A ball rolls outward so that its position is r(t) = 0.5t³ m. What is the magnitude of the acceleration of the ball when t = 2.1 s. Give your answer with 2 decimals.
C.
The arm of the robot is extending at a constant rate r dot-2 ft/s when r
= 4 ft, z =(3+²) ft, and 0 (t) = (0.5t) rad, where t is in seconds.
What is the magnitude of the velocity of the grip A when t = 7 s.
Give your answer with 2 decimals.
d.
Be careful, you have new numbers, you need to recalculate your values.
The arm of the robot is extending at a constant rate r dot-0.5 ft/s when
r = 3 ft, z = (31²) ft, and 0 (t) = (0.8t) rad, where t is in seconds.
What is the magnitude of the acceleration of the grip A when t = 6 s.
Give your answer with 2 decimals.
Transcribed Image Text:C. The arm of the robot is extending at a constant rate r dot-2 ft/s when r = 4 ft, z =(3+²) ft, and 0 (t) = (0.5t) rad, where t is in seconds. What is the magnitude of the velocity of the grip A when t = 7 s. Give your answer with 2 decimals. d. Be careful, you have new numbers, you need to recalculate your values. The arm of the robot is extending at a constant rate r dot-0.5 ft/s when r = 3 ft, z = (31²) ft, and 0 (t) = (0.8t) rad, where t is in seconds. What is the magnitude of the acceleration of the grip A when t = 6 s. Give your answer with 2 decimals.
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