has a mass of 20.0 kg, and CE has a mass of 30.0 kg. Hint: Treat AC and CE independently and calculate the centripetal and tangential acceleration components of their centers of mass. a) Calculate the value of the force P. b) Calculate the components of the reaction force at C. 3. The cylinder is uniform and has a mass of 5.00 kg. It is released from rest. a) Calculate the minimum coefficient of friction between the cylinder and the plane for which the cylinder will roll without slipping. b) Calculate the acceleration of the center of mass G of the cylinder if it rolls without slipping. 0.15 a 0.2 C G. 0.25m E continued ->

International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter4: Coplanar Equilibrium Analysis
Section: Chapter Questions
Problem 4.129P: The uniform 240-lb bar AB is held in the position shown by the cable AC. Compute the tension in the...
Question

How do I solve problem number 3?

has a mass of 20.0 kg, and CE has a mass of 30.0
kg. Hint: Treat AC and CE independently and
calculate the centripetal and tangential
acceleration components of their centers of mass.
a) Calculate the value of the force P.
b) Calculate the components of the reaction
force at C.
3. The cylinder is uniform and has a mass of 5.00 kg. It
is released from rest.
a) Calculate the minimum coefficient of friction
between the cylinder and the plane for which the
cylinder will roll without slipping.
b) Calculate the acceleration of the center of mass
G of the cylinder if it rolls without slipping.
0.15
a
0.2
C
G.
0.25m
E
continued ->
Transcribed Image Text:has a mass of 20.0 kg, and CE has a mass of 30.0 kg. Hint: Treat AC and CE independently and calculate the centripetal and tangential acceleration components of their centers of mass. a) Calculate the value of the force P. b) Calculate the components of the reaction force at C. 3. The cylinder is uniform and has a mass of 5.00 kg. It is released from rest. a) Calculate the minimum coefficient of friction between the cylinder and the plane for which the cylinder will roll without slipping. b) Calculate the acceleration of the center of mass G of the cylinder if it rolls without slipping. 0.15 a 0.2 C G. 0.25m E continued ->
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