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https://docs.google.com/document/d/1ug7uopjj9zipV0sCOS0WVUxL9HJ5GTZJ6L71_pH-1m0/edit https://drive.google.com/file/d/130hgTk5Xzf7M1l_fA5QovYXA8jPV-Wr7/view?pli=1 use these two links to answer the prompt under analysis of each videoFast forward to one or two seconds (same time as above)

https://docs.google.com/document/d/1ug7uopjj9zipV0sCOS0WVUxL9HJ5GTZJ6L71_pH-1m0/edit https://drive.google.com/file/d/130hgTk5Xzf7M1l_fA5QovYXA8jPV-Wr7/view?pli=1

use these two links to answer the prompt under analysis of each videoFast forward to one or two seconds (same time as above) after the collision and take another screen shot. Save that with as A#1f (video A, take 1, after the collision). 4. Draw vector drawings representing what occurs before and after the collision. The angles can be found by using a protractor and the "speeds" can be found by using a ruler on your screenshots (the distance will be proportional to the speed). When measuring the distances, be sure to keep your taped-off work space the same size; otherwise, you will need to determine the scale factor for the image. 5. Repeat for each scenario. 6. Calculate the momentum before and after every collision. 7. Calculate the kinetic energy before and after every collision.

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