Same situation as before. This time it s a block of mass 1.24 kg sliding with a constant velocity of 4.13 m/s to the north, which collides 100% elastically with a second, stationary block, of mass 3.08 kg, head-on, and rebounds back to the south, eventually colliding 100% elastically with a wall and rebounding northward. It then overtakes the second block, which is still moving north as a result of the first collision. What will be the speeds of the 1.24-kg and 3.08-kg blocks, respectively, after their SECOND collision with one another? a. 2.63 m/s and 2.02 m/s b. 3.33 m/s and 0.95 m/s c. 2.47 m/s and 1.49 m/s d. 1.84 m/s and 1.22 m/s
Same situation as before. This time it s a block of mass 1.24 kg sliding with a constant velocity of 4.13 m/s to the north, which collides 100% elastically with a second, stationary block, of mass 3.08 kg, head-on, and rebounds back to the south, eventually colliding 100% elastically with a wall and rebounding northward. It then overtakes the second block, which is still moving north as a result of the first collision. What will be the speeds of the 1.24-kg and 3.08-kg blocks, respectively, after their SECOND collision with one another? a. 2.63 m/s and 2.02 m/s b. 3.33 m/s and 0.95 m/s c. 2.47 m/s and 1.49 m/s d. 1.84 m/s and 1.22 m/s
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Same situation as before. This time it s a block of mass 1.24 kg sliding with a constant velocity of 4.13 m/s to the north, which collides 100% elastically with a second, stationary block, of mass 3.08 kg, head-on, and rebounds back to the south, eventually colliding 100% elastically with a wall and rebounding northward. It then overtakes the second block, which is still moving north as a result of the first collision. What will be the speeds of the 1.24-kg and 3.08-kg blocks, respectively, after their SECOND collision with one another?
a. 2.63 m/s and 2.02 m/sb. 3.33 m/s and 0.95 m/sc. 2.47 m/s and 1.49 m/sd. 1.84 m/s and 1.22 m/s
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