Two stock cars of equal mass 3880 kg are racing on a track. The cars are required to navigate a turn banked at an angle 10 with respect to the horizontal axis. The banked turn has a radius of curvature, 250 m. There is a coefficient of static friction between the tires and the road of Us- 0.66. The cars can drive at a speed of vmay without slipping towards the wall (without overcoming the static friction between the tires and the road). While driving through the banked turn, the car in front is driving at a speed of v 33.2 m/s. The car in back, which is travelling at a speed of v = 36.5 m/s, squarely rear ends the back of the first car in a perfect elastic collision. What is the maximum speed, vmax. the cars can take on this banked curve? Submit Answer After the collision, what is the speed of the first car, vi? Submit Answer After the collision, what is the speed of the second car, vz? Submit Answer After the collision, will either car slide up the banked curved into the wall?
Two stock cars of equal mass 3880 kg are racing on a track. The cars are required to navigate a turn banked at an angle 10 with respect to the horizontal axis. The banked turn has a radius of curvature, 250 m. There is a coefficient of static friction between the tires and the road of Us- 0.66. The cars can drive at a speed of vmay without slipping towards the wall (without overcoming the static friction between the tires and the road). While driving through the banked turn, the car in front is driving at a speed of v 33.2 m/s. The car in back, which is travelling at a speed of v = 36.5 m/s, squarely rear ends the back of the first car in a perfect elastic collision. What is the maximum speed, vmax. the cars can take on this banked curve? Submit Answer After the collision, what is the speed of the first car, vi? Submit Answer After the collision, what is the speed of the second car, vz? Submit Answer After the collision, will either car slide up the banked curved into the wall?
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