A projectile of mass m,= 38 g and velocity Vp= 308 i hits a box of mass mg= 10 kg moving with a velocity = 6 îa frictionless ramp inclined at an angle 0 = 32°. dp, m 1. Calculate the velocity of the Projectile-Block system after the collision. V pB S 2. Calculate the change of the kinetic energy due to the collision. AK = J 3. Is the collision II

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Chapter1: Units, Trigonometry. And Vectors
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A projectile of mass mp
= 38 g and velocity Vp = 308 i
m
hits a box of mass mB
= 10 kg moving with a velocity
Pi
m
V B,
= 6i
and embeds into it. The box with the projectile continues to slide on a frictionless surface until it reaches a
frictionless ramp inclined at an angle 0 = 32°.
m
1. Calculate the velocity of the Projectile-Block system after the collision. V
PB
2. Calculate the change of the kinetic energy due to the collision. AK =
3. Is the collision
elastic
inelastic
hmax
4. If the incline is frictionless determine the maximum height h
max the Projectile-Box can reach, h
m
тах
5. If the incline had a coefficient of kinetic friction of U= 0.15 which of the following heights would be the most likely outcome?
(Answer without calculation)
2.603 m
2.099 m
3.107 m
Transcribed Image Text:A projectile of mass mp = 38 g and velocity Vp = 308 i m hits a box of mass mB = 10 kg moving with a velocity Pi m V B, = 6i and embeds into it. The box with the projectile continues to slide on a frictionless surface until it reaches a frictionless ramp inclined at an angle 0 = 32°. m 1. Calculate the velocity of the Projectile-Block system after the collision. V PB 2. Calculate the change of the kinetic energy due to the collision. AK = 3. Is the collision elastic inelastic hmax 4. If the incline is frictionless determine the maximum height h max the Projectile-Box can reach, h m тах 5. If the incline had a coefficient of kinetic friction of U= 0.15 which of the following heights would be the most likely outcome? (Answer without calculation) 2.603 m 2.099 m 3.107 m
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