3. A bullet of mass m 6.00 g is fired with an initial velocity of 600 m/s into a block of mass M =300 g that Is initially at rest at the edge of a table of height h = 1.00 m. The bullet remains in the block, and after the impact the block lands a horizontal distance d from the bottom of the table. Determine the %3D %3D time of flight t and the horizontal distance d.

Physics for Scientists and Engineers
10th Edition
ISBN:9781337553278
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter9: Linear Momentum And Collisions
Section: Chapter Questions
Problem 46AP: Review. A bullet of mass m is fired into a block of mass M initially at rest at the edge of a...
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6.00 g is fired with an initial velocity of 600 m/s into a block of mass M= 300 g
=1.00 m. The bullet remains in the block, and
3. A bullet of mass m =
that Is initially at rest at the edge of a table of height h
after the impact the block lands a horizontal distance d from the bottom of the table. Determine the
time of flight t and the horizontal distance d.
m.
d
1 Add file
Transcribed Image Text:6.00 g is fired with an initial velocity of 600 m/s into a block of mass M= 300 g =1.00 m. The bullet remains in the block, and 3. A bullet of mass m = that Is initially at rest at the edge of a table of height h after the impact the block lands a horizontal distance d from the bottom of the table. Determine the time of flight t and the horizontal distance d. m. d 1 Add file
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