Learning Goal: A sled is being held at rest on a slope that makes an angle with the horizontal. After the sled is released, it slides a distance di down the slope and then covers the distance de along the horizontal terrain before stopping. Find the coefficient of kinetic friction between the sled and the ground, assuming that it is constant throughout the trip.
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- In a pickup game of dorm shuffleboard, students crazed by final exams use a broom to propel a calculus book along the dorm hallway. If the 3.5 kg book is pushed from rest through a distance of 0.83 m by the horizontal 31 N force from the broom and then has a speed of 1.0 m/s, what is the coefficient of kinetic friction between the book and floor? Number UnitsIn the situation illustrated in the figure below, a small package is deposited by a conveyor belt at point A onto a ramp at 0 = 50° degrees to the horizontal with a velocity of 0.8 m/s. The distance between points A and Bis 2 m. C В a) Calculate the maximum value 4t of the kinetic friction coefficient between the package and the ramp AB for which the parcel reaches point B. b) If the actual kinetic friction coefficient between the package and AB and BC is µi = 0.6 H, calculate the distance s on the level surface BC at which the package comes to rest.A hockey puck on a frozen pond with an initial speed of 21.3 m/s stops after sliding a distance of 234.9 m. Calculate the average value of the coefficient of kinetic friction between the puck and the ice.
- A book slides across a level, carpeted floor with an initial speed of 3.85 m/s and comes to rest after 3.75 m. Calculate the coefficient of kinetic friction between the book and the carpet. Assume the only forces acting on the book are friction, weight, and the normal force. μ = X10 TOOLSBy itself, the 2500-kg pickup truck executes a 0-100 km/h acceleration run in 10 s along a level road. If the unit uniformly accelerates from rest to a speed of 25 m/s in a distance of 150 m, determine the tension T in the towing tongue OA. Neglect all effects of the 5° tongue angle, i.e., assume that OA is horizontal.4-A.
- A car is moving at 50 mph initially on the road, then the engine suddenly shut down and the car continues to roll for 100 meters before it comes to a full stop. Calculate the frictional coefficient of the road.PRINTER VERSION 4 ВАСК NEXT Z Your answer is partially correct. Try again. A 2.70 kg block is initially at rest on a horizontal surface. A horizontal force F of magnitude 5.98 N and a vertical force P are then applied to the block (see the figure). The coefficients of friction for the block and surface are us = 0.4 and u = 0.25. Determine the magnitude of the frictional force acting on the block if the magnitude of P is (a)10.0 N and (b)14.0 N. (The upward pull is insufficient to move the block vertically.) m em em (a) Number 5.9 Units em lem (b) Number T7.37 Units lem Click if you would like to Show Work for this question: Open Show Work lem plem SHOW HINT blem LINK TO TEXT LINK TO SAMPLE PROBLEM VIDEO MINI-LECTURE blem e here to search 7:12 PM ENG 4/4/2021 13) 17 pause break eno Pgup prt sc delete hon insert 115Pgdn %23 3 4 5. backspo 远A hockey puck on a frozen pond is given an initial speed of 20 m/s. If the puck always remains on the ice and slides 115 m before coming to rest, determine the coefficient of kinetic friction between the puck and ice.
- Starting from rest a block slides down a smooth plane inclined at an angle of 300 a distance s and acquires a velocity v. If the plane were rough with a coefficient of kinetic friction µk the block would have to slide a distance 2s in order to acquire the same velocity v. The coefficient of kinetic friction between the block and the plane isFlying Circus of Physics Brake or turn? The figure depicts an overhead view of a car's path as the car travels toward a wall. Assume that the driver begins to brake the car when the distance to the wall is d=109 m, and take the car's mass as m=1430 kg, its initial speed as v0=39.0 m/s, and the coefficient of static friction as μS=0.500. Assume that the car's weight is distributed evenly on the four wheels, even during braking. (a) What magnitude of frictional force is needed (between tires and road) to stop the car just as it reaches the wall? (b) What is the maximum possible static friction fS, max? (c) If the coefficient of kinetic friction between the (sliding) tires and the road is μk=0.410, at what speed will the car hit the wall? To avoid the crash, a driver could elect to turn the car so that it just barely misses the wall, as shown in the figure. (d) What magnitude of frictional force would be required to keep the car in a circular path of radius d and at the given speed v0?…A skier starts from rest at the top of a hill that is inclined at 10.0° with respect to the horizontal. The hillside is 190 m long, and the coefficient of friction between snow and skis is 0.0750. At the bottom of the hill, the snow is level and the coefficient of friction is unchanged. How far does the skier glide along the horizontal portion of the snow before coming to rest? m