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3. A block of mass m 1.9 kg is held against a spring of spring constant k 410 and compressed 0.75 m. When released, it is pushed along the frictionless surface towards mi rebounds mass m 4.3 kg. The two masses collide and mass towards the spring at a speed of 2.1 m/s, while mass m slides back towards the spring at a sp a. What is the speed of mass mi right before the collision? b. What is the speed of mass m2 after the collision? c. How high up the hill does mass m2 go before stopping? d. Mass m2 slides back down the hill and collides and sticks with mass mi, now sitting at rest at the equilibrium position of the spring. How far do they compress the spring? e. Calculate the change in kinetic energy in the first collision. f. What type of collision is the first collision? Explain. g. What type of collision is the second collision? Explain.

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