Calculate the average heights and standard deviation for each object and enter in table 2. By using the average height the incline was lifted and the length of your incline, you can determine the angle of the incline from sin(0)= height lifted length of incline Determine the angle of incline for each average height and record in table 2. Now using this angle and the derivation of p, (as a function of angle) above, calculate u, for each friction pair and record in table 2.

College Physics
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ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Calculate the average heights and standard deviation for each object and enter in table 2. By
using the average height the incline was lifted and the length of your incline, you can determine
the angle of the incline from
sin(0) =
height lifted
length of incline
Determine the angle of incline for each average height and record in table 2. Now using this
angle and the derivation of μ, (as a function of angle) above, calculate μ, for each friction pair
and record in table 2.
Shoe
Can/Box
Stacked Cans/boxes
Average 25.96
16
10.39
Height
Standard 0.8921
0.7055
0.8837
Deviation
0
Ha
Table 2. Analysis of friction data.
I
Transcribed Image Text:Calculate the average heights and standard deviation for each object and enter in table 2. By using the average height the incline was lifted and the length of your incline, you can determine the angle of the incline from sin(0) = height lifted length of incline Determine the angle of incline for each average height and record in table 2. Now using this angle and the derivation of μ, (as a function of angle) above, calculate μ, for each friction pair and record in table 2. Shoe Can/Box Stacked Cans/boxes Average 25.96 16 10.39 Height Standard 0.8921 0.7055 0.8837 Deviation 0 Ha Table 2. Analysis of friction data. I
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