As shown in the figure, a metal ball with mass m, is initially at rest on...
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As shown in the figure, a metal ball with mass m, is initially at rest on a horizontal, frictionless table. A second metal ball with mass m, moving with a speed 2.00 m/s, collides with m,. Assume m1 moves initially along the +x-axis. After the collision, m, moves with speed 1.00 m/s at an angle of 0 = 52.0° to the positive x-axis. (Assume m1 0.200 kg and m2 = 0.300 kg.) %3D After the collision Vif sin e Before the collision Vif Cos e Uaf cos Ø Uef sin ø M2 b a (a) Determine the speed (in m/s) of the 0.300 kg ball after the collision. m/s (b) Find the fraction of kinetic energy transferred away or transformed to other forms of energy in the collision. JAK| K; As shown in the figure, a metal ball with mass m, is initially at rest on a horizontal, frictionless table. A second metal ball with mass m, moving with a speed 2.00 m/s, collides with m,. Assume m1 moves initially along the +x-axis. After the collision, m, moves with speed 1.00 m/s at an angle of 0 = 52.0° to the positive x-axis. (Assume m1 0.200 kg and m2 = 0.300 kg.) %3D After the collision Vif sin e Before the collision Vif Cos e Uaf cos Ø Uef sin ø M2 b a (a) Determine the speed (in m/s) of the 0.300 kg ball after the collision. m/s (b) Find the fraction of kinetic energy transferred away or transformed to other forms of energy in the collision. JAK| K;
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