If the 200 kg crate starts from rest and travels a distance of 10 m up the plane in 6s, determine the magnitude of force acting on the crate. The coefficient of kinetic friction between the crate and the ground is μ=0.4. 30° P 30°
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![If the 200 kg crate starts from rest and travels a distance of 10 m up the plane in 6s, determine the
magnitude of force acting on the crate. The coefficient of kinetic friction between the crate and the
ground is μ=0.4.
30°
P
30°](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F96929256-0073-402e-90e9-7bad7432412f%2F338c5d11-0524-4250-ab14-355ca5e5ea73%2F3likrnd_processed.png&w=3840&q=75)
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- The 600-lb cable spool is placed on a frictionless spindle that has been driven into the ground. If the force required to start the spool rotating is F = 160 lb, determine the coefficient of friction between the ground and the spool. Neglect the diameter of the spindle compared to the diameter of the spool.1. If the 50-kg crate starts from rest and achieves a velocity of v = 4 m/s when it travels a distance of 5 m to the right, determine the magnitude of the force P acting on the crate. The coefficient of static friction between the crate and the ground is u. = 0.3 30The 3-kg crate rests on the 10-kg cart where the coefficients of static and kinetic friction are u, = 0.25 and Mk=0.2, respectively. Determine the smallest constant force P needed to cause the crate to slip. How much time does it take for the crate to slip off the cart? 3 m- G - 2 m P
- If the 50 kg crate starts from rest and covers a distance of 7.8 meters upward in 4 seconds on a plane, then find the magnitude of the force P acting on the chest. The coefficient of kinetic friction between the crate and the floor is uk = 0.25. 30° 301. The coefficient of kinetic friction between the 40-kg crate and the slanting floor is μ = 0.3. if the angle a = 20°, what tension must the person exert on the rope to move the crate at constant speed? 10° TIf the 40kg box is moving with 1 m/s^2 acceleration to the right, determine the magnitude of normal force acting on the box, if F is 174 N. The coefficient of kinetic friction between the box and the ground is 0.3.
- A motorcyclist in a circus rides his motorcycle within the confines of the hollow sphere. If the coefficient of static friction between the wheels of the motorcycle and the sphere is µ, = 0.4, determine the minimum speed at which he must travel if he is to ride along the wall when e = 90°. The mass of the motorcycle and rider is 250 kg, and the radius of curvature to the center of gravity is p = 20 ft. Neglect the size of the motorcycle for the calculation.2. The car, having a mass of 1000 kg, is traveling horizontally along a 20° banked track which is circular and has a radius of curvature of p = 100 m. If the coefficient of static friction between the tires and the road is us = 0.3, determine the minimum and maximum constant speed at which the car can travel without sliding down and up the slope. Neglect the size of the car. e= 20°The force F, acting in a constant direction on the 24-kg block, has a magnitude which varies with the position s of the block. When s = 0 the block is moving to the right at v = 6 m/s. The coefficient of kinetic friction between the block and surface is μk = 0.3. Determine how far the block must slide before its velocity becomes 15 m/s. No hand written solution and no image
- The motor is towing the crate that has a mass of me = 1000 kg, and rests on the flat surface. It delivers an increasing horizontal pulling force of T= 500 Newton, where t is in second, to its cable at A, after 5 which the force is kept constant at 5000 N. The coefficients of static friction and kinetic friction are us =0.3 and uk =0.2, respectively, between the crate and the surface. Determine the velocity (m/s) of the crate when t₂ = 5s.Determine the speed v which the 605-kg four-man bobsled must have in order to negotiate the turn without reliance on friction. Also find the net normal force N exerted on the bobsled by the track. 40 -p = 50 m %3D Answers: V = i m/s N = kNThe block weighs 80 pounds. A cable is connected to itsupper left corner and passes over a fixed post. Thecoefficients of friction are μB = 0.3 for the block and theground and μP = 0.2 for the post and the cable. Determinethe minimum force T that will cause the system to move(either tip or slide - you must show which happens first).Take a = 2.5’ and b = 6’.
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