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Question
wr2. a curling rock slides with a constant velocity down the ice surface. if the mass of the curling rock is \\(20.0\text{ kg}\\) and the force due to friction is \\(3.92 \times 10^{-1}\text{ n}\\). find the coefficient of kinetic friction. (2 marks) show all work and give the answer in significant digits.
Identify given values and target unknown
We are given:
- Mass of the curling rock, \(m = 20.0\text{ kg}\)
- Force of kinetic friction, \(F_f = 3.92 \times 10^{-1}\text{ N} = 0.392\text{ N}\)
- Acceleration due to gravity, \(g = 9.81\text{ m/s}^2\)
We need to find:
- Coefficient of kinetic friction, \(\mu_k\)
Calculate the normal force
On a horizontal ice surface, the normal force \(F_N\) balances the gravitational force:
Relate friction to normal force
The force of kinetic friction is related to the normal force by:
Solve for the coefficient of kinetic friction
Rearranging the formula to solve for \(\mu_k\):
Express with correct significant digits
The given values have three significant digits:
- \(20.0\text{ kg}\) (3 sig figs)
- \(3.92 \times 10^{-1}\text{ N}\) (3 sig figs)
- \(g = 9.81\text{ m/s}^2\) (3 sig figs)
Rounding our result to three significant digits:
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\(2.00 \times 10^{-3}\)