19-23. The hoop (thin ring) has a mass of 5 kg and is released down the inclined plane such that it has a backspin w = 8 rad/s and its center has a velocity vg = 3 m/s as shown. If the coefficient of kinetic friction between the hoop and the plane is µr = 0.6, determine how long the hoop rolls before it stops slipping. w = 8 rad/s vG = 3 m/s 0.5 m 30°
19-23. The hoop (thin ring) has a mass of 5 kg and is released down the inclined plane such that it has a backspin w = 8 rad/s and its center has a velocity vg = 3 m/s as shown. If the coefficient of kinetic friction between the hoop and the plane is µr = 0.6, determine how long the hoop rolls before it stops slipping. w = 8 rad/s vG = 3 m/s 0.5 m 30°
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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Question
![19-23. The hoop (thin ring) has a mass of 5 kg and is
released down the inclined plane such that it has a backspin
w = 8 rad/s and its center has a velocity vg = 3 m/s as
shown. If the coefficient of kinetic friction between the
hoop and the plane is µr = 0.6, determine how long the
hoop rolls before it stops slipping.
w = 8 rad/s
vG = 3 m/s
0.5 m
30°](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F84d207d7-9fe6-4e96-86dc-e4f5726ec095%2Fca822bc6-fe72-4b71-adf5-227d5734b5c1%2Fmt8q219.png&w=3840&q=75)
Transcribed Image Text:19-23. The hoop (thin ring) has a mass of 5 kg and is
released down the inclined plane such that it has a backspin
w = 8 rad/s and its center has a velocity vg = 3 m/s as
shown. If the coefficient of kinetic friction between the
hoop and the plane is µr = 0.6, determine how long the
hoop rolls before it stops slipping.
w = 8 rad/s
vG = 3 m/s
0.5 m
30°
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