2.00 [kg] ap- 3. I'm elastic! Fantastic!. Suppose a particle with mass m₁ = proaches a stationary particle with an unknown mass m2 at the origin. The initial speed of particle 1 is = 2.34 [m/s] and is oriented at 8 = 30° be- low the horizontal axis as shown. Upon collision, both particles move with an unknown speed. par- ticle 1 is oriented at ß = 25.0° above the horizontal axis while particle 2 is oriented = 60° below the horizontal axis. Assume that the collision is elastic. Refer to the figure, the dashed lines refer to parti- cles before the collision and the solid lines are after the collision.

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1.What is the final speed of particle 1?

2. What is the mass of the second particle?

3. what is the final speed of particle 2

*** please include the equations clearly so i can follow through

2.00 [kg] ap-
3. I'm elastic! Fantastic!.
Suppose a particle with mass my
proaches a stationary particle with an unknown
mass m₂ at the origin. The initial speed of particle
1 is v₁ = 2.34 [m/s] and is oriented at 8 = 30° be-
low the horizontal axis as shown. Upon collision, (m
both particles move with an unknown speed. par-
ticle 1 is oriented at ß = 25.0° above the horizontal
axis while particle 2 is oriented = 60° below the
horizontal axis. Assume that the collision is elastic.
Refer to the figure, the dashed lines refer to parti-
cles before the collision and the solid lines are after
the collision.
Vil
0m₂
B
my
m2
Transcribed Image Text:2.00 [kg] ap- 3. I'm elastic! Fantastic!. Suppose a particle with mass my proaches a stationary particle with an unknown mass m₂ at the origin. The initial speed of particle 1 is v₁ = 2.34 [m/s] and is oriented at 8 = 30° be- low the horizontal axis as shown. Upon collision, (m both particles move with an unknown speed. par- ticle 1 is oriented at ß = 25.0° above the horizontal axis while particle 2 is oriented = 60° below the horizontal axis. Assume that the collision is elastic. Refer to the figure, the dashed lines refer to parti- cles before the collision and the solid lines are after the collision. Vil 0m₂ B my m2
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