Two masses m1=20.4kg and m2=27.8kg are free to move along the x-axis without friction. Mass m2 has a spring of spring constant k=2160Nm attached to its left-hand side. Initially, m1 moves with velocity v1=6.11ms and m2 moves with velocity v2=-8.01ms>. The two masses collide, compressing the spring. When the two masses are closest they travel with a common velocity=-2.03ms>. What are the velocities of m1 and m2 after the collision? You must get both velocities with 6 sig figs

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Two masses m1=20.4kg and m2=27.8kg are free to move along the x-axis without friction.
Mass m2 has a spring of spring constant k=2160Nm attached to its left-hand side.
Initially, m1 moves with velocity v1=6.11ms and m2 moves with velocity v2=-8.01ms>.
The two masses collide, compressing the spring.
When the two masses are closest they travel with a common velocity=-2.03ms>>
What are the velocities of m1 and m2 after the collision?
You must get both velocities with 6 sig figs
Transcribed Image Text:Two masses m1=20.4kg and m2=27.8kg are free to move along the x-axis without friction. Mass m2 has a spring of spring constant k=2160Nm attached to its left-hand side. Initially, m1 moves with velocity v1=6.11ms and m2 moves with velocity v2=-8.01ms>. The two masses collide, compressing the spring. When the two masses are closest they travel with a common velocity=-2.03ms>> What are the velocities of m1 and m2 after the collision? You must get both velocities with 6 sig figs
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