Figure 1: This graph shows the position and corresponding time of the small ball dropping. (Each point is measured 9 fra

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answerhappygod
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Figure 1: This graph shows the position and corresponding time of the small ball dropping. (Each point is measured 9 fra

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Figure 1 This Graph Shows The Position And Corresponding Time Of The Small Ball Dropping Each Point Is Measured 9 Fra 1
Figure 1 This Graph Shows The Position And Corresponding Time Of The Small Ball Dropping Each Point Is Measured 9 Fra 1 (69.44 KiB) Viewed 53 times
Figure 1: This graph shows the position and corresponding time of the small ball dropping. (Each point is measured 9 frame/s apart.) Times (s) 0 0.0375 0.075 0.1125 0.15 0.1875 0.225 0.2625 0.3 0.3375 0.375 0.4125 0.45 0.4875 Position (cm) 0 1 3 8 12 18 26 35 46 58 71 86 102 118
Graph 1: Position vs. Time for the small ball. Position (cm) Trendline for Position (cm) Position (cm) 125 100 75 50 25 0 0.0 0.1 0.2 Times (s) 0.3 0.4
H 00 HTT HUHT A.W NG 120
Figure 2: This graph shows the position and corresponding time of the large dodge ball dropping. (Each point is measured 9 frame/s apart.) Times (s) 0 0.0375 0.075 0.1125 0.15 0.1875 0.225 0.2625 0.3 0.3375 0.375 0.4125 0.45 Position (cm) 0 2 4 8 14 22 30 38 48 60 72 86
Graph 1: Position vs. Time for the large dodge ball. 125 Position (cm) 100 75 50 25 0 0.0 0.1 0.2 Times (s) 0.3 C 업데이트 0.4
무 10, 138
Table of Observations Distance of Pull Back Car in Relation to Different Pull Back Pull Back Displacement Trial #1 Trial #2 Toal #3 (meters) (seconds) & (meters) {(seconds) & (meters) (seconds) 1 (10cm) 1.31 m 2 (20 cm) 3.31 m 3 (30 cm) 3.45 m Average Velocity 3.14 5 4.865 4.945 Position #1 = 1.50 m t=3.30 s 1.48m 3.325 3.57m 4.785 1.70 m 3.51m 4.25 S 3.82m 5.395 Position #2 a= 3.55 m t = 4.835 3.435 3.85 m 3.465 Position #3 d=3.62m t=4.395 Table 2: Data collected of the pull back displacements, distance, time, average velocity and position of the car during the lab
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