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Centripetal force acts on all masses subjected to the cornering force.

The whole vehicle has centripetal force acting on the tires, via friction, allowing the vehicle to corner.

If you are free to move within the vehicle, yes, the door will stop you being flung outward.

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Q: When you're driving in a car and turn a corner centripetal force from the door of the car helps you move along the circular path of the corner?
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When you're driving in a car and turn a corner, centripetal force from the door of the car helps you move along the circular path of the corner?

When you're driving in a car and turn a corner, centripetal force from the door of the car helps you move along the circular path of the corner.


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What is meant by centripetal acceleration is perpendicular to velocity?

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How centripetal force balances n circular motion of electron?

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What is the work of centripetal forces in uniform circular motion?

Work is equal to Force * displacement * cos(angle between force and displacement). When there is uniform circular motion, the displacement is in the same direction as the velocity: along the tangent of the circle. The centripetal force always points towards the center of the circle. These two directions (vectors) are perpendicular to each other (90 degrees). Cos(90) = 0, so the work is 0.


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Uniform circular motion describes motion in which an object moves with constant speed along a circular path.In physics, uniform circular motion describes the motion of a body traversing a circular path at constant speed. The distance of the body from the axis of rotation remains constant at all times. Though the body's speed is constant, its velocity is not constant: velocity, a vector quantity, depends on both the body's speed and its direction of travel. This changing velocity indicates the presence of an acceleration; this centripetal acceleration is of constant magnitude and directed at all times towards the axis of rotation. This acceleration is, in turn, produced by a centripetal force which is also constant in magnitude and directed towards the axis of rotation.


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Why is the outer bank of the road kept slightly higher than the inner bank?

while taking turn on the road,a car moves in a circular path to keep the car moving along the circular path, centripetal force is required. in the absence of this force, the car will skid off the road to the outer size of the road and may possibly turn turtle due to inertia .the force of friction between the tires and roads provides the necessary centripetal force and keeps the car moving on the curved path.


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