Question: gger Pro - CHM EXP.3.3 Edit Experiment Data Analyze Insert Options Page Help GAG Page 1 Collect device connected. Data Set m' Aavg Graph 4:


gger Pro - CHM EXP.3.3 Edit Experiment Data Analyze Insert Options Page Help GAG Page 1 Collect device connected. Data Set m' Aavg Graph 4: Acceleration of glider as a function of the dimentionless hanging mass ((m/ ($12 ) ) 0.025928 0.263234 0.050074 0.58387 0.073053 0.73973 XE 0.094946 1.04543 Linear Fit for: Data Set | Function of dimentionless hanging mass 0. 115828 1.083 n' = mx+b 0. 135769 1.5183 m (Slope): 0.09202 b (Y-Intercept): 0.002338 Correlation: 0.9829 RMSE: 0.008471 Function of dimentionless hanging mass 0.05 24 0.5 1.5 25 26 Average Acceleration ((m/(s^2)) HOLON ENG 2:38 PM O US 2022-11-01 2 14 C Partly sunny ASUS ZenBookPart 2 - Investigating Newton's second law [1] Use the linear fit from Graph 4 to determine your experimental value for g with uncertainty. 9 = ( + [1] Compare your value of g with the accepted value of 9.81 m/s2. Calculate the percentage difference %diff = gaccepted - Jexperimental x 100, gaccepted and discuss. [1] In the linear fit of Graph 4, what is the physical meaning of the Y-intercept value? The [1] Do your results agree with Newton's 2nd law? Laboratory report: Motion on a linear air track
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