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In the first part we are measuring inelastic collisions. I plotted the VS. We expect the slope of this plot to be(2) The measured slope

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In the first part we are measuring inelastic collisions. I plotted the VS. We expect the slope of this plot to be(2) The measured slope and error I got was My value is statistically from the expected value. The value of the slope demonstrates the principle of conservation of because (2) We expect the y-intercept of this plot to be The measured y-intercept and error I got was My value is statistically from the expected value. What is the meaning of the y-intercept in this situation? (2) For one of the inelastic collisions I calculated an initial energy of J and a final energy of J. This means that in this collision the energy (2) conserved. If energy is lost, where does it go? (2) In the second part we are measuring elastic collisions you plot the VS. We expect the slope of this plot to be The measured slope and error I got was My value is statistically from the expected value. The value of the slope demonstrates the principle of conservation of because (2) We expect the y-intercept of this plot to be (2) The measured y-intercept and error I got was My value is statistically from the expected value. What is the meaning of the y-intercept in this situation? (2)

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