A 2.20 kg hoop 1.20 m in diameter is rolling to the right without slipping on a horizontal floor at a steady 2.60 rad/s. (a) How fast is its center moving? (b) What is the total kinetic energy of the hoop? (c) Find the velocity vector (magnitude and direction!) of each of the following points, as viewed by a person at rest on the ground: (i) the highest point on the hoop; (ii) the lowest point on the hoop; (iii) a point on the right side of the hoop, midway between the top and the bottom. (d) Find the velocity vector (magnitude and direction!) for each of the points in part (c), but this time as viewed by someone moving along with the same velocity as the hoop.

Physics for Scientists and Engineers: Foundations and Connections
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ISBN:9781133939146
Author:Katz, Debora M.
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Chapter12: Rotation I: Kinematics And Dynamics
Section: Chapter Questions
Problem 78PQ
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2. A 2.20 kg hoop 1.20 m in diameter is rolling to the right without slipping on a horizontal
floor at a steady 2.60 rad/s.
(a) How fast is its center moving?
(b) What is the total kinetic energy of the hoop?
(c) Find the velocity vector (magnitude and direction!) of each of the following points,
as viewed by a person at rest on the ground: (i) the highest point on the hoop; (ii)
the lowest point on the hoop; (iii) a point on the right side of the hoop, midway
between the top and the bottom.
(d) Find the velocity vector (magnitude and direction!) for each of the points in part
(c), but this time as viewed by someone moving along with the same velocity as the
hoop.
Transcribed Image Text:2. A 2.20 kg hoop 1.20 m in diameter is rolling to the right without slipping on a horizontal floor at a steady 2.60 rad/s. (a) How fast is its center moving? (b) What is the total kinetic energy of the hoop? (c) Find the velocity vector (magnitude and direction!) of each of the following points, as viewed by a person at rest on the ground: (i) the highest point on the hoop; (ii) the lowest point on the hoop; (iii) a point on the right side of the hoop, midway between the top and the bottom. (d) Find the velocity vector (magnitude and direction!) for each of the points in part (c), but this time as viewed by someone moving along with the same velocity as the hoop.
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