Problem 3 Chapter 6: A block with mass m 0.5-kg is released from rest on a frictionless track at a distance h = 2.5m above the top of a table. It then collides elastically with an object having mass m 1.0 kg that is initially at rest on the table, as shown in the figure. The table is h= 2.00 m high a) How far away from the bottom of the table do the objects land? Hints: determine the velocities just after the collision how high does object 1 travel back up the track b) Suppose the collision is inelastic. Where.does the combined object land? hy

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Chapter6: Momentum And Collisions
Section: Chapter Questions
Problem 51P: A billiard ball moving at 5.00 m/s strikes a stationary ball of the same mass. Alter the collision,...
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a block with a mass of 0.5 kg is released from rest on a frictionless track at a distance 2.5m above the top of the table. it then collides elastically with an object having mass m2=1.0kg that is initially at rest on the table as shown in the figure. the table is h2=2.oo m .

a)How far away from the bottom of the table do the objects land ? Hints : determine the velocities just after the collision . how high does object 1 travel back up the track.

b) suppose the collision is inelastic , where does combined object land

 

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Problem 3 Chapter 6: A block with mass m 0.5-kg is
released from rest on a frictionless track at a distance h, =
2.5 m above the top of a table. It then collides elastically
with an object having mass m = 1.0 kg that is initially at
rest on the table, as shown in the figure. The table is h =
2.00 m high
a) How far away from the bottom of the table do the
objects land? Hints: determine the velocities just
after the collision, how high does object 1 travel
back up the track
b) Suppose the collision is inelastic. Where.does the
combined object land?
hy
Transcribed Image Text:Problem 3 Chapter 6: A block with mass m 0.5-kg is released from rest on a frictionless track at a distance h, = 2.5 m above the top of a table. It then collides elastically with an object having mass m = 1.0 kg that is initially at rest on the table, as shown in the figure. The table is h = 2.00 m high a) How far away from the bottom of the table do the objects land? Hints: determine the velocities just after the collision, how high does object 1 travel back up the track b) Suppose the collision is inelastic. Where.does the combined object land? hy
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