A 1.50 kg hoop of radius 0.160 m is released from rest at point A in the figure below, Its center of gravity a distance of 1.90 m above the ground. The hoop rolls without slipping to the bottom of an incline and back up to point B where it is launched vertically into the alr. The hoop then rises to its maximum height h max at point C. HINT V = 0 1.90 m hmax B t0.450 m (a) At point B, find the hoop's translational speed va (in m/s). m/s (b) At point B, find the hoop's rotational speed w. (in rad/s). rad/s (c) At point C, find the hoop's rotational speed w. (in rad/s). rad/s (d) At point C, find the maximum height hma of the hoop's center of gravity (in m)
A 1.50 kg hoop of radius 0.160 m is released from rest at point A in the figure below, Its center of gravity a distance of 1.90 m above the ground. The hoop rolls without slipping to the bottom of an incline and back up to point B where it is launched vertically into the alr. The hoop then rises to its maximum height h max at point C. HINT V = 0 1.90 m hmax B t0.450 m (a) At point B, find the hoop's translational speed va (in m/s). m/s (b) At point B, find the hoop's rotational speed w. (in rad/s). rad/s (c) At point C, find the hoop's rotational speed w. (in rad/s). rad/s (d) At point C, find the maximum height hma of the hoop's center of gravity (in m)
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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
Transcribed Image Text:A 1.50 kg hoop of radius 0.160 m is released from rest at point A in the figure below, Its center of gravity a distance of 1.90 m above the ground, The hoop rolls without slipping to the bottom of an incline and
back up to point B where it is launched vertically into the air. The hoop then rises to its maximum height hmay at point C.
HINT
V = 0
1.90 m
hmax
B.
10.450 m
(a) At point B. find the hoop's translational speed v. (in m/s).
m/s
(b) At point B, find the hoop's rotational speed w. (in rad/s).
rad/s
(c) At point C, find the hoop's rotational speed w. (in rad/s).
rad/s
(d) At point C, find the maximum height hay of the hoop's center of gravity (in m).
m
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