- particle hanging in the pendulum, of length 0.7 meters, has a mass of 4.1 kg and it is going to swing down to strike lock D with mass 3.1 kg to make it move on the ground. Block D is not moving before the collision. The coefficient of titution is 0.7 between the two colliding objects. The coefficient of friction between D and the ground is 0.32. e pendulum is released from rest at position A. Determine the velocity in m/s of the block D after sliding on the und a distance s- 1.3 meters. B D so answer the following questions: 1. Draw the complete and clear FBD of the ball on the pendulum at a position between A and B. Indicate two sides of the FBD with all forces and mass x accelerations, label all of them. 2. Find the velocity of the ball just before the impact at position B. 3. Complete the LIM diagrams as studied in the lectures and find the velocities of the objects right after the collision. Is the ball bouncing back or continuing the motion after the collision?

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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The particle hanging in the pendulum, of length 0.7 meters, has a mass of 4.1 kg and it is going to swing down to strike
a block D with mass 3.1 kg to make it move on the ground. Block D is not moving before the collision. The coefficient of
restitution is 0.7 between the two colliding objects. The coefficient of friction between D and the ground is 0.32.
The pendulum is released from rest at position A. Determine the velocity in m/s of the block D after sliding on the
ground a distances 1.3 meters.
B
Also answer the following questions:
1. Draw the complete and clear FBD of the ball on the pendulum at a position between A and B. Indicate two sides of
the FBD with all forces and mass x accelerations, label all of them.
2. Find the velocity of the ball just before the impact at position B.
3. Complete the LIM diagrams as studied in the lectures and find the velocities of the objects right after the collision. Is
the ball bouncing back or continuing the motion after the collision?
Transcribed Image Text:The particle hanging in the pendulum, of length 0.7 meters, has a mass of 4.1 kg and it is going to swing down to strike a block D with mass 3.1 kg to make it move on the ground. Block D is not moving before the collision. The coefficient of restitution is 0.7 between the two colliding objects. The coefficient of friction between D and the ground is 0.32. The pendulum is released from rest at position A. Determine the velocity in m/s of the block D after sliding on the ground a distances 1.3 meters. B Also answer the following questions: 1. Draw the complete and clear FBD of the ball on the pendulum at a position between A and B. Indicate two sides of the FBD with all forces and mass x accelerations, label all of them. 2. Find the velocity of the ball just before the impact at position B. 3. Complete the LIM diagrams as studied in the lectures and find the velocities of the objects right after the collision. Is the ball bouncing back or continuing the motion after the collision?
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