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Data Collected:Picket Fence OnlyTime (s)0.000000.049960.085460.114460.139580.162100.182680.20173Distance (m)0.0000.0500.1000.1500.2000.2500.3000.350Picket Fence + 20gTime (s)0.000000.084550.133180.167830.196360.221190.243530.26397Distance (m)0.0000.0500.1000.1500.2000.2500.3000.350Picket Fence + 50gTime (s)0.000000.037620.080290.112640.139860.163820.185480.20540Distance (m)0.0000.0500.1000.1500.2000.2500.3000.350 Data Collection [6 marks] ,, ,- Present your 3

Data Collected:Picket Fence OnlyTime (s)0.000000.049960.085460.114460.139580.162100.182680.20173Distance (m)0.0000.0500.1000.1500.2000.2500.3000.350Picket Fence + 20gTime (s)0.000000.084550.133180.167830.196360.221190.243530.26397Distance (m)0.0000.0500.1000.1500.2000.2500.3000.350Picket Fence + 50gTime (s)0.000000.037620.080290.112640.139860.163820.185480.20540Distance (m)0.0000.0500.1000.1500.2000.2500.3000.350

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Data Collection [6 marks] ,, ,- Present your 3 data sets in neat, titled and well-labeled tables. [2 marks x 3] ma] Distance (mi 0.00000 0.000 __ k SPH3U1 Kinematics and Dynamics Name: _ Analysis [13 marks] 1. For each data set. calculate the velocity at each time intewai. Record each velocity at the midpoint of its time Interval In a data table. [6 marks] Show 2 sample calculations. [1 mark] 0 03676 2. For each calculated velocity data set, calculate the acceleration of each new time interval and record in a data table. [6 marks] Show 2 sample calculations. [1 mark] 0 03676- 0 05531 I 3. Calculate the average of the acceleration values for the picket fence and each of the 2 masses. [3 marks] 4. What is the accepted value of acceleration for a free-falling object? Compare this value to each experimental value to determine the percentage error for each of the masses. [3 marks] Calculate the downward force acting on each of the 2 masses. [3 marks] Calculate the force of gravity for each of the 2 masses. [2 marks] Compare the experimental force results to the accepted results; is the comparison expected based on previous ndings? [2 marks] 5'9\"!\

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