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I need help with this https://1drv.ms/x/s!An77YfpJlOjJggegDaTPm5FCyuRi A B C D E F G H K M N Falling Time of Fall (sec) Linear Angular Value
I need help with this https://1drv.ms/x/s!An77YfpJlOjJggegDaTPm5FCyuRi
A B C D E F G H K M N Falling Time of Fall (sec) Linear Angular Value Units mass m, acceleration, a, acceleration,a, Tension T, Reading No. units Time t1 Time t2 Time t3 Average t units units units Torquet,units Reading 1, diameter of axle 8 cm 15 13.98 13.71 15.21 14.30333 1.622894638 0.40569866 3.41E+02 1.36E+03 Reading 2, diameter of axle 8 cm 20 14.6 14.38 13.61 14. 196667 1.647271987 0.4118118 3.80E+02 1.52E+03 Average diameter of axle 8 cm C N 25 11.2 10.83 9.31 10.44667 3.042163903 0.760540976 6.63E+02 2.65E+03 Radius of axle, r 4 cm 30 8.46 8.8 9.79 9.016667 4.083636884 1.020906721 5.51E+02 2.20E+03 5 40 9.37 8.39 8.29 8.683333 4.403166802 1. 100791701 3.60E+02 1.44E+03 Reading 1, distance of fall 166 cm 50 6.27 6.08 6.82 6.39 8. 13085783 2.032714457 1.29E+02 5. 14E+02 Reading 2, distance of fall 166 cm Average distance of fall, d 166 cm Value Units Slope of Torque (t) vs. Angular Acceleration (a) Graph Mass of hanger 24.8 g Experimental Value of Moment of Inertia, lexp Theoretical Value of Moment of Inertia, Ith Mass of flywheel, M, 42.65 g Percent error (Ith as standard) Radius of flywheel, r1 12.6 g Radius of gyration of flywheel (use Ith) Acceleration due to gravity, g 9.81 m/s2Step by Step Solution
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