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Question 7 (1 point) At the local hockey rink, a puck with a mass of 0.12 kg is given an initial speed of 5.00 m/s.
Question 7 (1 point) At the local hockey rink, a puck with a mass of 0.12 kg is given an initial speed of 5.00 m/s. If the coefficient of kinetic friction between the ice and the puck is 0.16, what distance does the puck slide before coming to rest, in meters? Study Example 6-1. Calculate the weight of the puck. Like in a previous problem, the normal force is equal to the weight because there are no additional vertical forces present. If we know the normal force and the coefficient of kinetic friction we can calculate the force of friction using Eq. 6-1. This is the only horizontal force acting on the puck. Use Newton's Second Law of Motion to calculate the acceleration (recall that we do know the mass). Find the appropriate kinematic equation to wrap-up the problem. What is the final velocity of the puck in this
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