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A B C D E F G H K Procedure III, INELASTIC COLLISION (% Elasticity: 2 A. Equal Masses m p1 = mv KE =

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A B C D E F G H K Procedure III, INELASTIC COLLISION (% Elasticity: 2 A. Equal Masses m p1 = mv KE = 1/2 mv" KE, = 1/2 mv," IP,-Prl/P, *100 IKE, - KE,1/KE, *100 MASS, kg Velocity before Momentum before KE before collision Velocity after Momentum after KE after collision Momentum KE collision, m/s collision, kg m/s collision, m/s collision, kg m/s % difference % difference Ball 1 (Cyan) Ball 2 (Magenta) Total 0 OX 0 CONCLUSION: (Is Linear Momentum conserved? is kinetic energy conserved) 10 11 B. Unequal Masses 12 MASS, kg Velocity before Momentum before KE before collision Velocity after Momentum after KE after collision Momentum KE 13 collision, m/s collision, kg m/s collision, m/s collision, kg m/s % difference % difference 14 Ball 1 (Cyan) 15 Ball 2 (Magenta) 16 Total 0 Ox 0 17 CONCLUSION: (Is Linear Momentum conserved? is kinetic energy conserved) 18 19

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