The COF between 11 kg collar and shaft is 0.19. The spring is unstretched when s = 0 where it is given an initial velocity of 4 m/s to the right. Determine (a) the sliding time (sec)and (b) the sliding distance (m) for the velocity to diminish to zero. The spring constant k = 15 N/m and the dimension ht = 0.8 m. 0.19 11 4 15
The COF between 11 kg collar and shaft is 0.19. The spring is unstretched when s = 0 where it is given an initial velocity of 4 m/s to the right. Determine (a) the sliding time (sec)and (b) the sliding distance (m) for the velocity to diminish to zero. The spring constant k = 15 N/m and the dimension ht = 0.8 m. 0.19 11 4 15
Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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The COF between 11 kg collar and shaft is 0.19. The
spring is unstretched when s = O where it is given an
initial velocity of 4 m/s to the right. Determine (a)
the sliding time (sec)and (b) the sliding distance (m)
for the velocity to diminish to zero. The spring
constant k = 15 N/m and the dimension ht = 0.8 m.
μ
0.19
3
11
VO
4
k
15
ht
0.8](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F45a7c812-ebdc-4a96-a135-01b384097b2a%2F112320e7-8de9-49cb-a876-33ca5c57e80d%2Fdoyzi0e_processed.png&w=3840&q=75)
Transcribed Image Text:ht
www
6P
The COF between 11 kg collar and shaft is 0.19. The
spring is unstretched when s = O where it is given an
initial velocity of 4 m/s to the right. Determine (a)
the sliding time (sec)and (b) the sliding distance (m)
for the velocity to diminish to zero. The spring
constant k = 15 N/m and the dimension ht = 0.8 m.
μ
0.19
3
11
VO
4
k
15
ht
0.8
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