Without friction force, a vehicles tyres would not gain any traction on the road. There are two forms of friction force, static and kinetic. Kinetic friction force is necessary to keep a car gripped to the road while its in motion. The static force is what stops you from being able to push a car while the handbrakes on because the wheels aren't free to move and the force of friction is too great to allow the tyres to slide along the ground, as well as the fact a car weighs usually more than one metric ton. The force of friction is related to its (mu) factor or its friction coefficient carefully calculated by scientists under test conditions for several different types of surfaces under certain conditions.
The tires of a moving car experience the most friction with the road. This friction is necessary for the car to accelerate, decelerate, and make turns.
A car tire in contact with a road surface provides high friction. This friction is necessary to ensure proper traction between the tire and the road, allowing the vehicle to accelerate, decelerate, and navigate turns safely.
Friction between the tires of a car and the road helps the car stay on a banked curve by providing the necessary centripetal force. This friction allows the car to maintain its speed and direction while navigating the curve without slipping or sliding off the road.
Friction is necessary when walking to prevent slipping, while driving a car to maintain traction on the road, and when writing with a pen or pencil to create legible marks on paper.
Friction between the tires of a car and the road surface affects the motion of the car by providing the necessary traction for the tires to grip the road. This allows the car to accelerate, decelerate, and turn effectively. However, too much friction can also lead to wear and tear on the tires and decrease fuel efficiency.
Actually the good effect of friction is: if you drive a car you can make it stop, friction makes it stop. But the bad effect is: friction wears out machines so you can replace it. Hope it helps! :) Also with no friction the tires would just spin and go no place, and steering would be a problem.
The tires of a moving car experience the most friction with the road. This friction is necessary for the car to accelerate, decelerate, and make turns.
A car tire in contact with a road surface provides high friction. This friction is necessary to ensure proper traction between the tire and the road, allowing the vehicle to accelerate, decelerate, and navigate turns safely.
Friction between the tires of a car and the road helps the car stay on a banked curve by providing the necessary centripetal force. This friction allows the car to maintain its speed and direction while navigating the curve without slipping or sliding off the road.
Friction is necessary when walking to prevent slipping, while driving a car to maintain traction on the road, and when writing with a pen or pencil to create legible marks on paper.
Friction between the tires of a car and the road surface affects the motion of the car by providing the necessary traction for the tires to grip the road. This allows the car to accelerate, decelerate, and turn effectively. However, too much friction can also lead to wear and tear on the tires and decrease fuel efficiency.
something that stops and object from movementexample:there is friction on the road . when the road is slippery your car eventually has to stop and what makes you car stop is friction.
Static friction causes a car tire to turn on the road. This friction occurs when the tire grips the road surface and prevents slipping. The friction between the tire and the road allows the car to accelerate, decelerate, and turn.
The direction of friction on an accelerating car by the road is opposite to the direction of the car's motion. As the car accelerates forward, the frictional force between the tires and the road acts in the opposite direction to resist the car's motion and provide the necessary traction for it to move forward without slipping.
If there was no friction the vehicles would never stop, we couldn't write on the board as friction makes chalk writing visible. Without friction no building could be constructed, the vehicles on the road would never move. Friction helps a lot in many ways and is a necessary in our life.
Virtually all automotive brakes rely on friction between a special brake material and either metal or ceramic friction surface.Exceptions:There are regenerative braking systems that charge the batteries in electric and hybrid cars There are engine compression and exhaust brakes common on diesel pickup trucks
Friction helps a car drift by providing the necessary grip between the tires and the road surface. The right balance of friction allows the driver to control the car's slide and maintain control during the drift. Insufficient friction can result in a loss of control, while excessive friction can hinder the car's ability to slide smoothly.