A bullet of mass m = 8.00 g is fired into a block of mass M = 220 g that is initially at rest at the edge of a table of height h = 1.00 m figure below). The bullet remains in the block, and after the impact the block lands d = 1.80 m from the bottom of the table. Determi initial speed of the bullet. Use the given information to find the velocity of the block after collision with the bullet and then use conservation of momentum to fin initial speed of the bullet. m/s M

Physics for Scientists and Engineers: Foundations and Connections
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Author:Katz, Debora M.
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Chapter11: Collisions
Section: Chapter Questions
Problem 40PQ: Initially, ball 1 rests on an incline of height h, and ball 2 rests on an incline of height h/2 as...
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A bullet of mass m =
8.00 g is fired into a block of mass M
220
that is initially at rest at the edge of a table of height h
= 1.00 m (see
figure below). The bullet remains in the block, and after the impact the block lands d = 1.80 m from the bottom of the table. Determine the
initial speed of the bullet.
Use the given information to find the velocity of the block after collision with the bullet and then use conservation of momentum to find the
initial speed of the bullet. m/s
M
d.
Transcribed Image Text:A bullet of mass m = 8.00 g is fired into a block of mass M 220 that is initially at rest at the edge of a table of height h = 1.00 m (see figure below). The bullet remains in the block, and after the impact the block lands d = 1.80 m from the bottom of the table. Determine the initial speed of the bullet. Use the given information to find the velocity of the block after collision with the bullet and then use conservation of momentum to find the initial speed of the bullet. m/s M d.
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