A solid cylinder (mass 1.2kg, radius 5.0cm) on a horizontal table is connected to a block (mass 200 g) via a pulley (mass 0.80kg, radius 10.0cm) via a light, rigid string. Draw free body diagram for each of the object 1) list the dynamic and kinematic equations that related to all three objects. 2) find the acceleration of the falling block 3) fnd the angular acceleration of the cylinder and the friction force on it
A solid cylinder (mass 1.2kg, radius 5.0cm) on a horizontal table is connected to a block (mass 200 g) via a pulley (mass 0.80kg, radius 10.0cm) via a light, rigid string. Draw free body diagram for each of the object 1) list the dynamic and kinematic equations that related to all three objects. 2) find the acceleration of the falling block 3) fnd the angular acceleration of the cylinder and the friction force on it
Automotive Technology: A Systems Approach (MindTap Course List)
6th Edition
ISBN:9781133612315
Author:Jack Erjavec, Rob Thompson
Publisher:Jack Erjavec, Rob Thompson
Chapter53: Antilock Brake, Traction Control, And Stability Control Systems
Section: Chapter Questions
Problem 15RQ: Why are the wires leading to some wheel-speed sen sors twisted?
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A solid cylinder (mass 1.2kg, radius 5.0cm) on a horizontal table is connected to a block (mass 200 g) via a pulley (mass 0.80kg, radius 10.0cm) via a light, rigid string. Draw free body diagram for each of the object
1) list the dynamic and kinematic equations that related to all three objects.
2) find the acceleration of the falling block
3) fnd the angular acceleration of the cylinder and the friction force on it
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Step 1: Determine the kinematic relations.
VIEWStep 2: Draw Free Body Diagrams (FBDs) and Kinetic Diagrams for all the three objects.
VIEWStep 3: Determine dynamics relations.
VIEWStep 4: b) Evaluate the acceleration of block.
VIEWStep 5: c) Evaluate angular acceleration and friction force on cylinder.
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