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COLLISION #1: • Set the elasticity to 70% • Arrange the initial locations of the balls so that will collide obliquely. Complete the below tables by inputting knowns and pressing the play button. Before the Collision 0.5 kg Ball v (m/s) v (m/s) v (m/s) Component Velocities 1.000 m/s 0.300 m/s -0.500 m/s 1.5 kg Ball v. (m/s) -0.500 m/s 1 Component Momenta P: (kgm/s) 0.500 kg m/s P.kgm/s) 0.150 kg m/s P: kgm/s) -0.750 kg m/s P.kgm/s) -0.750 kg m/s calculation: Total Momentum calculation: Direction () calculation calculation: After the Collision 0.5 kg Ball 1.5 kg Ball Component Velocities v. m/s) -0.996 m/s v (m/s) -0.517 m/s v (m/s) 0.165 m/s v (m/s) -0.228 m/s P: kgm/3) Component Momenta -0.498 kg m/s P: (kgm/s) -0.259 kg m/s P: kgm/s) 0.248 kg m/s P. kgm/s) -0.341 kg m/s calculation calculation Total Momentum calculation: calculation: Direction (9) Was momentum conserved in both component directions? PL = P. PA = P,
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answerhappygod
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Can someone help me fill the rest of this in. Please show work
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