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[1] [1] [1] Part 1 - Determining g on an incline Use the linear t from Graph 3 to determine your experimental value for g

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[1] [1] [1] Part 1 - Determining g on an incline Use the linear t from Graph 3 to determine your experimental value for g with uncertainty. 9=( + ) Compare your value of g with the accepted value of 9.81 m/sz. Calculate the percentage difference %diff = 93ccepted'gexperimental X 100' gaccepted and discuss. In the linear fit of Graph 3, what is the physical meaning of the Y-intercept value? Latest 2.0 Time Position Velocity (s) (m/s) 0.05 1.365 -0.183 .10 1.357 -0.199 0.15 1.346 -0.218 1.5 0.20 1.335 -0.240 0.25 1.322 -0.263 0.30 1.309 -0.288 0.35 1.293 -0.313 0.40 1.277 -0.336 1.0- Position (m) ).45 1.260 -0.359 0.50 1.241 -0.384 ).55 1.221 -0.407 0.60 1.200 -0.429 .65 1.179 0.454 0.5- ).70 1.155 -0.478 0.75 1.131 -0.502 0.80 1.105 -0.526 0.85 1.078 -0.551 0.90 1.050 -0.576 0.0- ") - N - ).95 1.020 -0.598 1.00 0.990 -0.628 Time (s) .05 0.956 0.640 1.10 0.926 -0.653 1.15 0.892 -0.690 .20 0.858 .0.729 A 1.25 0.819 0.754 1.30 0.781 -0.765 1.35 0.743 .0.786 1.40 0.703 -0.810 2 1.45 0.662 -0.833 1.50 0.620 -0.854 Linear Fit for: Latest | Velocity 1.55 0.577 -0.877 v = mt+b m (Slope): -0.4721 +/- 0.001958 m/s/s 1.60 0.532 -0.901 -0.923 Velocity (m/s) 1.65 0.486 Of b (Y-Intercept): -0.1481 +/- 0.001993 m/s Correlation: -0.9997 1.70 0.440 -0.944 RMSE: 0.005354 m/s 1.75 .392 -0.967 1 80 0 343 -1 991 -2- Position -4- 6 m N- Time (s)

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