3. (MOMENTUM AND COLLISIONS) A 0.01 kg bullet traveling at 300 m/s hits a 2 kg block attached to the ceiling by a massless string. The block is not thick enough to stop the bullet, and the bullet passes through the block, exiting with one-third of its original speed. (a) What is the maximum change in height of the block after the interaction between the block and the bullet? (b) How much mechanical energy is lost in the interaction? In other words, what is the change in the internal energy of the system due to the interaction? the avstens

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3. (MOMENTUM AND COLLISIONS) A 0.01 kg bullet traveling at 300 m/s hits a 2 kg
block attached to the ceiling by a massless string. The block is not thick enough to stop
the bullet, and the bullet passes through the block, exiting with one-third of its original
speed.
(a) What is the maximum change in height of the block after the interaction between the
block and the bullet?
(b) How much mechanical energy is lost in the interaction? In other words, what is the
change in the internal energy of the system due to the interaction?
released? Find and report the incessan
Transcribed Image Text:3. (MOMENTUM AND COLLISIONS) A 0.01 kg bullet traveling at 300 m/s hits a 2 kg block attached to the ceiling by a massless string. The block is not thick enough to stop the bullet, and the bullet passes through the block, exiting with one-third of its original speed. (a) What is the maximum change in height of the block after the interaction between the block and the bullet? (b) How much mechanical energy is lost in the interaction? In other words, what is the change in the internal energy of the system due to the interaction? released? Find and report the incessan
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