Given the following physics equation v? = v3 + 2a(x, – xo) and a table of data for velocities at different positions along a track, make a graph so that acceleration is the slope and initial velocity squared is the y- intercept. Assume x, = 0. Report your values of acceleration and initial velocity squared as confidence intervals. Include your graph and regression statistics. %3D xf (m) vr (m/s) 0.1 2.13 0.2 2.21 0.3 2.32 0.4 2.44 0.5 2.54 0.6 2.67 0.7 2.73 0.8 2.82 0.9 2.91 1 2.99 1.1 3.05 1.2 3.20 1.3 3.24 1.4 3.31 1.5 3.42 1.6 3.47 1.7 3.53 1.8 3.57 1.9 3.67 3.72 2.

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Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
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Given the following physics equation v} = v3 + 2a(x, – xo) and a table of data for velocities at different
positions along a track, make a graph so that acceleration is the slope and initial velocity squared is the y-
intercept. Assume x, = 0. Report your values of acceleration and initial velocity squared as confidence
intervals. Include your graph and regression statistics.
%3D
xf (m) v (m/s)
0.1
2.13
0.2
2.21
0.3
2.32
0.4
2.44
0.5
2.54
0.6
2.67
0.7
2.73
0.8
2.82
0.9
2.91
1
2.99
1.1
3.05
1.2
3.20
1.3
3.24
1.4
3.31
1.5
3.42
1.6
3.47
1.7
3.53
1.8
3.57
1.9
3.67
3.72
o o o o ở
Transcribed Image Text:Given the following physics equation v} = v3 + 2a(x, – xo) and a table of data for velocities at different positions along a track, make a graph so that acceleration is the slope and initial velocity squared is the y- intercept. Assume x, = 0. Report your values of acceleration and initial velocity squared as confidence intervals. Include your graph and regression statistics. %3D xf (m) v (m/s) 0.1 2.13 0.2 2.21 0.3 2.32 0.4 2.44 0.5 2.54 0.6 2.67 0.7 2.73 0.8 2.82 0.9 2.91 1 2.99 1.1 3.05 1.2 3.20 1.3 3.24 1.4 3.31 1.5 3.42 1.6 3.47 1.7 3.53 1.8 3.57 1.9 3.67 3.72 o o o o ở
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