mı: 3 kg m2: 2 kg V1i: 1.5 m/s V2i: -2 m/s Find the following values from the simulation Vif: O.10 V2r. O- 1O Verify that momentum is conserved and kinetic energy is conserved by completing the following table: Momentum Momentum after Kinetic energy Kinetic energy after collision 2 miV12 + ½ m2V2? ½ miV12 + ½ m2V2? before collision collision before collision miV1i + m2V2i m1Vif + m2V2f

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m1: 3 kg
m2: 2 kg
V1i: 1.5 m/s
V2i: -2 m/s
Find the following values from the simulation
V1f. O.10
V2t: 0- O
Verify that momentum is conserved and kinetic energy is conserved by
completing the following table:
Momentum
Momentum after Kinetic energy
Kinetic energy after
collision
2 miV1? + ½ m2V21? 2 miV1? + ½ m2V2?
before collision
collision
before collision
m1V1i + m2V2i
m1V1f + m2V2f
Transcribed Image Text:m1: 3 kg m2: 2 kg V1i: 1.5 m/s V2i: -2 m/s Find the following values from the simulation V1f. O.10 V2t: 0- O Verify that momentum is conserved and kinetic energy is conserved by completing the following table: Momentum Momentum after Kinetic energy Kinetic energy after collision 2 miV1? + ½ m2V21? 2 miV1? + ½ m2V2? before collision collision before collision m1V1i + m2V2i m1V1f + m2V2f
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