What is the maximum speed with which a 1200-kgkg car can round a turn of radius 90.0 mm on a flat road if the coefficient of static friction between tires and road is 0.50?
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What is the maximum speed with which a 1200-kgkg car can round a turn of radius 90.0 mm on a flat road if the coefficient of static friction between tires and road is 0.50?
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- A 1290 kg sports car rounds a flat curve of radius 56.0 m. Given that the coefficient of static friction between the tires and road is 0.800, calculate what maximum speed the car can round the road without sliding.A 1750 kg car rounds a curve on a flat road of radius 65.0 m. If coefficient of static friction is 0.62what is the maximum velocity with which the car can follow the curved road without skidding?A 1200-kg car rounds a corner of radius r = 45 m. If the coefficient of static friction between the tires and the road isms = 0.82, what is the greatest speed the car can have in the corner without skidding?
- What is the maximum speed (in m/s) at which a car can round a corner with radius 25.0 m, if the coefficient of static friction between its tires and the road is 0.40.A vehicle drives around a flat circular corner with a radius of 105m. If the maximum coefficient of static friction between the wheels and pavement is 0.90, then what is the maximum speed that the car can maintain without skidding?A car travels at a steady 39 m/s around a horizontal curve of radius 143 m. What is the minimum coefficient of static friction between the road and the car's tires that will allow the car to travel at this speed without sliding?
- The maximum static coefficient of friction between the tires of a 2000 kg car and the road is lsmax 0.25. What is the maximum speed with which the car can make a turn of radius 50 m without skidding?A car enters a horizontal, curved roadbed of radius 50.0 m. The coefficient of slatic friction between the tires and the roadbed is 0.20. What is the maximum speed with which the car can safely negotiate the unbanked curve?A car goes around a flat curve of radius 50 m at a speed .of 14 m/s What must be the minimum coefficient of friction between the tires and the road for the car to make the turn?
- How large must the coefficient of static friction be between the tires and the road if a car is to round a level curve of radius 85m at a speed of 26.4 m/s? Assume that the tires are not slipping , but about to break free. (Answer =0.84)A car's maximum velocity speed of 4√10 m/s can turn safely on a cruved path that 40 meters radius and 0.4 coeffcient of static friction between tire and road. What must be the curved path radius if the maximum velocity speed of the car must be 10 m/s, with 0.5 as the coefficient of static friction so that the car can still turn safely without skidding out of a curved road?What is the maximum speed with which a 1200 kg car can round a turn of radius 89.0m on a flat tire road if the coefficient of static friction between tires and road is 0.45? Express your answer to two significant figures and include the appropriate units.