A ballistic pendulum can be used to measure the speed of a bullet from a gun. A ballistic pendulum consists of a block hanging from a string. You would shoot a bullet at the block, which would lodge itself inside the block, causing the block to swing forward. The faster/heavier the bullet, the larger the angle the block will swing. Vo 0 L B 8 B Consider the 2D collision when the bullet (travelling horizontally) hits the block (at rest). During this brief collision (ignoring the pendulum aspect for now), which of the following would apply? Kinetic energy and momentum are both conserved. Kinetic energy is conserved but momentum is not. Kinetic energy is not conserved but momentum is. ONeither kinetic energy, nor momentum are conserved.

University Physics Volume 1
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Chapter9: Linear Momentum And Collisions
Section: Chapter Questions
Problem 19P: A skater of mass 40 kg is carrying a box of mass 5 kg. The skater has a speed of 5 m/s with respect...
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Please help me with is is the first option correct or is it the third one
A ballistic pendulum can be used to measure the speed of a bullet from a gun. A
ballistic pendulum consists of a block hanging from a string. You would shoot a bullet
at the block, which would lodge itself inside the block, causing the block to swing
forward. The faster/heavier the bullet, the larger the angle the block will swing.
0
B
0
B
Consider the 2D collision when the bullet (travelling horizontally) hits the block (at
rest). During this brief collision (ignoring the pendulum aspect for now), which of the
following would apply?
Kinetic energy and momentum are both conserved.
O Kinetic energy is conserved but momentum is not.
Kinetic energy is not conserved but momentum is.
ONeither kinetic energy, nor momentum are conserved.
Transcribed Image Text:A ballistic pendulum can be used to measure the speed of a bullet from a gun. A ballistic pendulum consists of a block hanging from a string. You would shoot a bullet at the block, which would lodge itself inside the block, causing the block to swing forward. The faster/heavier the bullet, the larger the angle the block will swing. 0 B 0 B Consider the 2D collision when the bullet (travelling horizontally) hits the block (at rest). During this brief collision (ignoring the pendulum aspect for now), which of the following would apply? Kinetic energy and momentum are both conserved. O Kinetic energy is conserved but momentum is not. Kinetic energy is not conserved but momentum is. ONeither kinetic energy, nor momentum are conserved.
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