An 6.00 g bullet is fired into a 2.70 kg block initially at rest at the edge of a frictionless table of height 1.00 m. The bullet remains in the block, and after impact the block lands 2.00 m from the bottom of the table. Determine the initial speed of the bullet (in m/s). 1.00 m 3 2.00 m
An 6.00 g bullet is fired into a 2.70 kg block initially at rest at the edge of a frictionless table of height 1.00 m. The bullet remains in the block, and after impact the block lands 2.00 m from the bottom of the table. Determine the initial speed of the bullet (in m/s). 1.00 m 3 2.00 m
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![An 6.00 g bullet is fired into a 2.70 kg block initially at
rest at the edge of a frictionless table of height 1.00 m.
The bullet remains in the block, and after impact the
block lands 2.00 m from the bottom of the table.
Determine the initial speed of the bullet (in m/s).
1.00 m
+
- 2.00 m](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fe95a2fd0-51f9-48d3-a461-050fecccf6b7%2F9ffbad05-1142-4ed1-99b0-e0f69bcc8df0%2Fid1z2ec_processed.jpeg&w=3840&q=75)
Transcribed Image Text:An 6.00 g bullet is fired into a 2.70 kg block initially at
rest at the edge of a frictionless table of height 1.00 m.
The bullet remains in the block, and after impact the
block lands 2.00 m from the bottom of the table.
Determine the initial speed of the bullet (in m/s).
1.00 m
+
- 2.00 m
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