a 650 kg car is taking a circular turn with a radius of 225 m that is banked with a 20 grade. If there is a coefficient of friction of 0.20 between the tires and the road, what use the maximum velocity the car can go without slipping up or down the turn?
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a 650 kg car is taking a circular turn with a radius of 225 m that is banked with a 20 grade. If there is a coefficient of friction of 0.20 between the tires and the road, what use the maximum velocity the car can go without slipping up or down the turn?
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- A 600-kg car is going around a curve with a radius of 120 m that is banked at an angle of 20° with a speed of 24.5 m/s. What is the minimum coefficient of static friction required for the car not to skid?A car is trying to make a turn on a banked curve on a very icy day and the frictional force between the tires and road is zero. The curve has a radius of 50 m and the car is moving at 12 m/s. What angle should the curve be banked at for this to happen safely?A bobsled travels along a frictionless track. It crosses the starting line with a speed of v0=3.1 m/s. At an elevation of 21m below the starting line, it takes a turn along a flat section of track (that is not uphill or downhill). This curve is banked and has a radius of curvature of r=14 m. How many times their normal weight will a rider feel when going around this curve?
- A car moving at 41 km/h negotiates a 150 m -radius banked turn designed for 60 km/h . What coefficient of friction is needed to keep the car on the road? Express your answer using two significant figures.A 1500 Kg car rounds a curve of radius 69 m banked at an angle of 14 degrees. what is the magnitude of the friction force required for the car to travel at 6t8 km/h?Two banked curves have the same radius. Curve A is banked at 12.6°, and curve B is banked at an angle of 19.0%. A car can travel around curve A without relying on friction at a speed of 10.7 m/s. At what speed can this car travel around curve B without relying on friction?
- Two banked curves have the same radius. Curve A is banked at 12.3 °, and curve B is banked at an angle of 16.4 °. A car can travel around curve A without relying on friction at a speed of 16.8 m/s. At what speed can this car travel around curve B without relying on friction?A velodrome has an aggressively banked curve, where the surface makes an angle of 58.9 degrees with the horizontal. If you are biking around this curve (such that your path traces a horizontal circle with radius 21.7 m as you go around the turn), and the coefficient of static friction of your bike tires with the velodrome surface is 0.617, what is the minimum speed that you can go before starting to slip down the ramp? Give your answer in km/hr.A 1500 kg vehicle is rounding a frictionless-banked curve which is elevated at 25° incline. How fast must the vehicle be moving in order to maintain the same height all the way around the curve? The curve has a 320 m radius of curvature at the roads midpoint.
- A curve in a road has a radius of curvature of 96 meters and is banked at a 14.65 degree angle. What is the speed in meters per second at which a car can drive through the curve if the road is frictionless?A car travels around a circle with a diameter of 500 m at a constant speed of 25 m/s. The static friction coefficient is 0.3 and the kinetic friction coefficient is 0.2. Will the car skid?Mohamad is driving a car around a turn of radius r = 20 m. The road is on a banked curve of 30 degrees. If the coefficient of static friction is 0.35, what is the maximum speed that Mohamad can safely make the turn?