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Data Trial 1 Trial 2 Trial 3 Distance travelled by mass, S (m) [Same for each trial) 05 m 0.5 m 0.5 m Total mass moved (M+m)
Table 3: Force versus acceleration data Trial Force Total mass moving (constant) Acceler ation from Timer Data (varies) (vari
Data Trial 1 Trial 2 Trial 3 Distance travelled by mass, S (m) [Same for each trial) 05 m 0.5 m 0.5 m Total mass moved (M+m) (KG) 03284 .?'to. same in all trials Hanging mass (m) [different in each trial] Time between gates, t (sec) 14 It% |t2-O-68 t3 #0.99 d Experimental Acceleration, dexp (m/s) (use: S vot t ^at2) 4 165 mls try to make vo Theoretical Acceleration, athe (m/s2) (use: aINM+m Difference (%) mg 15.3 Task 1: Create a table to show the relationship between force (mg) and acceleration a [refer to the table-3 in the lab manual] [2 pts. Task 2: plot the acceleration vs. force graph, best fit the data-points, and show the relationship between F Discuss the relationship you observe and compare with the expected relation! Plots MUST have captions![ Task 3: discuss deviation if any [calculate the error%] and explain why it happens [5 pts.]
Table 3: Force versus acceleration data Trial Force Total mass moving (constant) Acceler ation from Timer Data (varies) (varies) m3 2 m2)-g m3 + m3)-8 m3 Note: move masses from glider to weight hanger such that total mass is constant. M- mass of glider m-initial weight force suspended
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