QUESTION 3 This is a continuation of the previous question. Right before and right after the collision, what is conserved? O Momentum O Energy Both momentum and energy

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QUESTION 1
Which of the following concepts will you be testing for the ballistic pendulum lab?
✔Conservation of momentum
✔Conservation of energy
✔Kinematics
Period of a pendulum
QUESTION 2
Consider a totally inelastic collision like the one detailed in the lab manual where M is initially at rest and m moves with an initial speed of vo = 10
m/s. Assume that m = 100 g and M = 300 g. What will be the speed of the masses right after the collision in m/s?
QUESTION 3
This is a continuation of the previous question. Right before and right after the collision, what is conserved?
O Momentum
O Energy
O Both momentum and energy
QUESTION 4
This is a continuation of the previous question. Right after the collision the masses swing up to a height h. What will h be in meters? Use g = 10
m/s2.
Transcribed Image Text:QUESTION 1 Which of the following concepts will you be testing for the ballistic pendulum lab? ✔Conservation of momentum ✔Conservation of energy ✔Kinematics Period of a pendulum QUESTION 2 Consider a totally inelastic collision like the one detailed in the lab manual where M is initially at rest and m moves with an initial speed of vo = 10 m/s. Assume that m = 100 g and M = 300 g. What will be the speed of the masses right after the collision in m/s? QUESTION 3 This is a continuation of the previous question. Right before and right after the collision, what is conserved? O Momentum O Energy O Both momentum and energy QUESTION 4 This is a continuation of the previous question. Right after the collision the masses swing up to a height h. What will h be in meters? Use g = 10 m/s2.
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