Q1/ Two blocks A and B are connected as shown in the figure. The coeffecient of friction between Block A and inclined surface are 0.22. Compute: 1) acceleration of block A 2) acceleration of block B 3) the tension force of the cord 90 kg 160 kg note: neglect masses of pulleys 30
Q1/ Two blocks A and B are connected as shown in the figure. The coeffecient of friction between Block A and inclined surface are 0.22. Compute: 1) acceleration of block A 2) acceleration of block B 3) the tension force of the cord 90 kg 160 kg note: neglect masses of pulleys 30
University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
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![Q1/ Two blocks A and B are connected as
shown in the figure. The coeffecient of
friction between Block A and inclined
surface are 0.22. Compute:
1) acceleration of block A
2) acceleration of block B
3) the tension force of the cord
90 kg
160 kg
note: neglect masses of pulleys
Q2/
A cylinder C (mass=3 kg) move along horizontal
surface with frietion factor of ( u =0.1). The
cylinder has a pin P. This pin moves in slot of arm
which rotate in vertical plane at a rate(ė =0.6 rad/sec).
è = 0.6
Compute the force exerted by the arm on the
pin at the position (0 = 60 ).
rad/sec
P
0.5 m](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F46372959-2dda-41bd-abef-26ab8a4aeb3b%2Feb40e0f8-2fca-4ac6-a153-fa0cd4a0a6e7%2Fmujqza_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Q1/ Two blocks A and B are connected as
shown in the figure. The coeffecient of
friction between Block A and inclined
surface are 0.22. Compute:
1) acceleration of block A
2) acceleration of block B
3) the tension force of the cord
90 kg
160 kg
note: neglect masses of pulleys
Q2/
A cylinder C (mass=3 kg) move along horizontal
surface with frietion factor of ( u =0.1). The
cylinder has a pin P. This pin moves in slot of arm
which rotate in vertical plane at a rate(ė =0.6 rad/sec).
è = 0.6
Compute the force exerted by the arm on the
pin at the position (0 = 60 ).
rad/sec
P
0.5 m
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