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Table 1(a) Same mass m,=m =2.68 kq:_ my - moving to the right, my - stationary V1i Va V 17 P1i Pai P1 P21 (m/s)

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Table 1(a) Same mass m,=m =2.68 kq:_ my - moving to the right, my - stationary V1i Va V 17 P1i Pai P1 P21 (m/s) (m/s) (m/s) (m/s) (kam/s) (ka.mis) (kq.m/s) (kg.m/s) Pi K(J) K (J) (kg.m/s) (kq.m/s) Kin + Ka Ki + Kaz Table 1(b) Different mass m,= 1.73 kg and my=2.28 kg; my - moving to the right, my - stationary Vii V 17 P1i P2i P21 (m/s) (m/s) (m/s) (m/s) (kam/s) (kg.m/s) (kg.m/s) (ka.m/s) K (J) K.(J) (kg.m/s) (ka.m/s) Kit + KaTable 1(c) Different mass my= 1.46 kg and ma=2.77 kg; head on collision Vii P1i P2i (m/s) (m/s) (m/s) (m/s) (kar/s) (ka.m/s) (kq.m/s) (kg.mis) P P K(J) K (J) (ka.m/s) (ka m/s) Ki + KaTable 2(a)_ m,=2.12 kg and my=2.87 kg; m - moving to the right, me - stationary V ir P1i Pai (m/s) (m/s) (m/s) (m/s) (kam/s) (kq.m/s) (kq.m/s) (kg.mis) P K(J) (kq.m/s) (kg.m/s) Kit + Ka Table 2(bl m,=2.12 kg, ma=2.87 kg; head on collision V1i V 17 Var P1i P2i (m/s) (m/s) (m/s) (m/s) (kam/s) (kq.mis) (kq.m/s) (ka.m/s) PI P. K(J) K(J) (kg.m/s) (kg.m/s) Kil + Ka\fTable 3(a) Elastic my=2.12 kg and my=2.87 kg VW P. P. (m/s) (m/s) (m/s) (m/s) (ka m/s) (ka m/s) (ka m/s) (ka m/s) (ka m/s) (ka m/s) P. (ka m/s) (m/s) | (m/s) (m/s) (m/s) (ka m/s) (kg m/s) (ka m/s) (ka m/s) (ka m/s) K P. K (ka m/s) (J) (ka m/s) (J)Table 3(b) Inelastic my=2.12 kg and my=2.87 kg V W Vw P P. (m/s) (m/s) | (m/s) | (m/s) | (kq m/s) (ka m/s) (ka m/s) |(ka m/s) (kq m/s) (ka m/s) VN P. (kq m/s) P. (m/s) (m/s) (m/s) | (m/s) (ka m/s) (ka m/s) (ka m/s) | (ka m/s) (ka m/s) P P. (ka m/s) | (J) (ka m/s) (J) Write down the ratios K/K and P/P for the two tables 3(a) and 3(b)

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