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PART 1: Object moving away from the motion sensor. Table 1 Run Time interval, Position (units) Distance Displacement Speed Velocity # (units) [Initial & End

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PART 1: Object moving away from the motion sensor. Table 1 Run Time interval, Position (units) Distance Displacement Speed Velocity # (units) [Initial & End (units) (units) (units) (units) la t1=1.844 s x1=0.1123 m 1.340 m 1.340 m 0.1025 m/'s +0.1025 m/'s 12=14.91 s x2=1.492 m At=13.07 s Ax=1.340 m 1b t1=1.531 s x1=0.07880 m 0.003300 m 0.003300 m 0.1031 m/s +0.1031 m/'s 12=1.563 s x2=0.08210 m At=0.03200 s Ax=0.003300 m 1c t1=14.94 s x1=1.495 m 0.003000 m 0.003000 m 0.1000 m/'s +0.1000 m's 12=14.97 s x2=1.498 m At=0.0300 s Ax=0.003000 m Table 2 Run Slope (units) Y-intercept (units) Name of Physics quantity # (i.e. position, distance, etc.) 1 0.1059 m/'s -0.07794 m 2 Using equation 5, substitute in your slope and y-intercept to create an equation that describes the motion of the cart: Run 1: Run 2: Table 3. (Use Logger Pro for statistical data to calculate avg. velocity and uncertainty) Run # Average Velocity, (units) Standard deviation (units) 1 2

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