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.
Friction opposes motion by creating resistance between surfaces in contact. In the context of forward motion, friction can reduce the speed of an object. For example, when a car applies brakes, the friction between the brake pads and the rotors slows down the car by converting its kinetic energy into heat energy.
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.
Interesting - static friction is greater than moving friction; but if the car is not in a skid, then the part of the tires in contact with the road is not moving ... thus static friction holds in both cases.
The force that causes the car to stop by opposing its motion is friction. Friction occurs between the tires of the car and the road surface, creating a force that resists the motion of the car, ultimately bringing it to a stop.
Friction and motion are related because friction is a force that resists motion between two surfaces in contact. When there is friction between objects, it can affect how easily they can move past each other, slowing down or stopping their motion.
Friction opposes motion by creating resistance between surfaces in contact. In the context of forward motion, friction can reduce the speed of an object. For example, when a car applies brakes, the friction between the brake pads and the rotors slows down the car by converting its kinetic energy into heat energy.
Friction is de opposition of motion. if a car is in motion, the friction is said to be reduced because it oppose de movement of the car.
----
it affects motion by friction a friction pull it down or up
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.
Interesting - static friction is greater than moving friction; but if the car is not in a skid, then the part of the tires in contact with the road is not moving ... thus static friction holds in both cases.
The force that causes the car to stop by opposing its motion is friction. Friction occurs between the tires of the car and the road surface, creating a force that resists the motion of the car, ultimately bringing it to a stop.
Because of friction.
Friction and motion are related because friction is a force that resists motion between two surfaces in contact. When there is friction between objects, it can affect how easily they can move past each other, slowing down or stopping their motion.
Sin no
Friction can affect the dynamics of objects in circular motion by creating a force that opposes the motion of the object. This can cause the object to slow down or change its trajectory. Friction can also generate heat, which can further impact the object's movement.
Friction will slow it down