The angular speed in is,
Consequently, the radial acceleration is given by
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Hence the seed acceleration is, .
Step 3: (b) Calculation for the least coefficient of static friction to avoid slippage
By using the methods in chapter 6, we have
Thus, the coefficient of friction is given by
Substitute all the value in the above equation.
Hence the value of least coefficient of static fraction is, .
Step 3: (c) Calculation for the least coefficient of static friction to avoid slippage when the turntable had undergone constant angular acceleration from rest in 0.25 s
The radial acceleration of the object is given by
While the tangential acceleration is given by
Thus, the magnitude of acceleration is,
If the object is not to slip at any time, we require
Thus, since , we get
Hence the value of least coefficient of static fraction is, 0.11