8.44 • Combining Conservation Laws. A 15.0 kg block is attached to a very light horizontal spring of force constant 500.0 N/m and is rest- ing on a frictionless horizontal table (Fig. E8.44). Suddenly it is struck by a 3.00 kg stone traveling horizontally at 8.00 m/s to the right, where- upon the stone rebounds at 2.00 m/s horizontally to the left. Find the maximum distance that the block will compress the spring after the collision.
8.44 • Combining Conservation Laws. A 15.0 kg block is attached to a very light horizontal spring of force constant 500.0 N/m and is rest- ing on a frictionless horizontal table (Fig. E8.44). Suddenly it is struck by a 3.00 kg stone traveling horizontally at 8.00 m/s to the right, where- upon the stone rebounds at 2.00 m/s horizontally to the left. Find the maximum distance that the block will compress the spring after the collision.
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8.44
![8.44 • Combining Conservation Laws. A 15.0 kg block is attached
to a very light horizontal spring of force constant 500.0 N/m and is rest-
ing on a frictionless horizontal table (Fig. E8.44). Suddenly it is struck
by a 3.00 kg stone traveling horizontally at 8.00 m/s to the right, where-
upon the stone rebounds at 2.00 m/s horizontally to the left. Find the
maximum distance that the block will compress the spring after the
collision.
Figure E8.44
15.0 kg
3.00 kg 8.00 m/s](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F08c8a911-79e3-492b-9a9d-1c4841a08cde%2F57d68d5a-19a9-44a4-a263-a291116efe91%2Fahfj8c_processed.jpeg&w=3840&q=75)
Transcribed Image Text:8.44 • Combining Conservation Laws. A 15.0 kg block is attached
to a very light horizontal spring of force constant 500.0 N/m and is rest-
ing on a frictionless horizontal table (Fig. E8.44). Suddenly it is struck
by a 3.00 kg stone traveling horizontally at 8.00 m/s to the right, where-
upon the stone rebounds at 2.00 m/s horizontally to the left. Find the
maximum distance that the block will compress the spring after the
collision.
Figure E8.44
15.0 kg
3.00 kg 8.00 m/s
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