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Collision Worksheet I. Elastic collision with stationary cart You should create a table with the given columns for each combination of masses on the carts.
Collision Worksheet I. Elastic collision with stationary cart You should create a table with the given columns for each combination of masses on the carts. V1,initial V1,final V2, final Pl.initial Pl,final P2.final Ap KEinitial KEfinal AKE 270 270 D.C.GF 0.192 270 770 0:703 -0.24 0.017 -0.350 770 270 0.390 0.188 -0.01 0.54 II. Inelastic collision with stationary cart You should create a table with the given columns for each combination of masses on the carts. m1 m2 V1,initial V1,final V2,final Pl,initial PI, final P2,final Ap KEinitial KEfinal AKE 270 270 0.736 U. 3IS 10.390 270 770 0. 782 0.200 770 270 0. 481 0. $62 0.34 III. Explosion You should create a table with the given columns for each combination of masses on the carts. VI,final V2, final Pl, final P2,final Ap 270 270 0.257 0.273 270 270 -0.278 O. 282 270 270 0.264 0. 277 IV. Collision with two moving carts You should create a table with the given columns for each combination of masses on the carts. mi ma V1,initial V2,initial V1,final V2, final Pl.initial P2,initial PI,final P2, final Ap KEinitial KEfinal AKEQuestions to address in your lab report 1. Consider each part of the lab separately. To within the uncertainty of your measurements was the momentum conserved? Explain. 2. Looking at your results for part I, was the energy conserved? What about for the elastic collisions in part IV? Explain. 3. Describe what happens when a cart has an elastic collision with an identical stationary cart. What happens when a light cart has an elastic collision with a stationary heavier cart? 4. Where does the energy go in part II and part IV for the inelastic collisions? 5. Where does the energy come from in part III to make the carts move? 6. Discuss any sources of errors in your measurements. V.I V.F VLI VIF 27 .27 0.40% -0.204 0. 148 -0.372 27 1 554 -0.309 0.333 -0.519 .27 0.342 0.410 0. 427 0.29) M. M, V.I VIF VLI VIF 0.25A 1.012 0.428 77 25 0.515 0.313 .27 0.374 0.074 0.196 0.504 .392 1.560 0.30 0.053 20 0.354 -0.622 0.319 0.034 . 27 77 1 263 0635 0 063
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