you could exceed the traction of your tires and lose control and skid or flip
A curve on a mountain roadway is very challenging to navigate. You need to drive slow and with an extreme amount of caution.
The centripetal force that allows a car to move around a sharp curve on a roadway is provided by the friction between the tires and the road surface. This frictional force acts inwards towards the center of the curve, providing the necessary centripetal force for the car to turn without skidding off the road.
The centripetal force that allows a car to move around a sharp curve in a roadway is provided by friction between the tires and the road surface. This friction provides the necessary force to keep the car moving in a curved path rather than continuing in a straight line. It is directed towards the center of the curve, enabling the car to maintain its circular motion.
Bump
Sharp curve or edge
The centripetal force (f) can be calculated from:.f = m * (v^2 / r ) , where..m = mass of car (say 1 000 kg)v = velocity (say 30 metres / second)r = curve radius to centre of gravity of car ( say 50 metres)so:f = 1000 * (900 / 50) = 18 000 newtons
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To prepare for entering sharp curves, a driver should reduce speed before entering the curve to decrease kinetic energy. This can be done by lightly applying the brakes. Additionally, drivers should stay focused, maintain control of the steering wheel, and keep a safe distance from other vehicles.
a meander is a sharp turn in a river. also the meander would of been eroded to make a sharp curve :)
Practice using their brakes when they turn on the road. That way they are more experienced.
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The man will experience a centrifugal force pushing him towards the right side of the curve. This can make him feel like he is being pulled away from the center of the curve. Additionally, he may need to lean into the curve to maintain his balance and prevent himself from falling towards the outer edge of the curve.