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Yes, centripetal force is required to keep a rotating body moving in a circular path. It acts towards the center of the circular motion, causing the body to constantly change direction while moving in a circular path.

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What is the difference between centrifugal force and centripetal force, and how do they affect the motion of objects in a rotating system?

Centrifugal force is the outward force experienced by an object in a rotating system, while centripetal force is the inward force that keeps an object moving in a circular path. Centrifugal force pushes objects away from the center of rotation, while centripetal force pulls objects towards the center. These forces work together to keep objects in motion in a rotating system, with centripetal force maintaining the circular path and centrifugal force counteracting it.


Can a centripetal force ever do work on an object. explain?

Centripetal force refers to the force that acts on a body moving in a circular path. It does not do work on an object because it acts perpendicular to the motion of the body. The work done on a rotating object is zero.


How much work is done by the centripetal force on a body along a circular path?

Zero. W = F* d cos (Theta) W = Tension * displacement * cos (90) The force is perpendicular to the objects motion (or displacement of the object) W = T * d * 0 W= 0


Why work done by centripetal force during half rotation is zero?

The centripetal force always acts perpendicular to the displacement of the object moving in a circular path. Since the work done is the product of force and displacement in the direction of force, and the displacement is perpendicular to the centripetal force, the work done by the centripetal force over a full rotation is zero.


What are Centripetal and Centrifugal forces work?

Center of gravity toward the center of the body absorbs. Centrifugal force away from the center of the object. Centripetal force is real. Centrifugal force is made up and doesn't exist.

Related Questions

What is the difference between centrifugal force and centripetal force, and how do they affect the motion of objects in a rotating system?

Centrifugal force is the outward force experienced by an object in a rotating system, while centripetal force is the inward force that keeps an object moving in a circular path. Centrifugal force pushes objects away from the center of rotation, while centripetal force pulls objects towards the center. These forces work together to keep objects in motion in a rotating system, with centripetal force maintaining the circular path and centrifugal force counteracting it.


Can a centripetal force ever do work on an object. explain?

Centripetal force refers to the force that acts on a body moving in a circular path. It does not do work on an object because it acts perpendicular to the motion of the body. The work done on a rotating object is zero.


How much work is done by the centripetal force on a body along a circular path?

Zero. W = F* d cos (Theta) W = Tension * displacement * cos (90) The force is perpendicular to the objects motion (or displacement of the object) W = T * d * 0 W= 0


How does the wall of death work?

due to centripetal force


Why work done by centripetal force during half rotation is zero?

The centripetal force always acts perpendicular to the displacement of the object moving in a circular path. Since the work done is the product of force and displacement in the direction of force, and the displacement is perpendicular to the centripetal force, the work done by the centripetal force over a full rotation is zero.


What are Centripetal and Centrifugal forces work?

Center of gravity toward the center of the body absorbs. Centrifugal force away from the center of the object. Centripetal force is real. Centrifugal force is made up and doesn't exist.


Does centripetal force do work on the particle on which it acts?

No, because the force is perpendicular to the movement.


What are the conditions of zero work?

Hello word performed is got by the expression F s cos@ If F ie force is not applied at all then no work could be performed. If s ie displacement is zero then work is not done thought force is acting Thirdly if @ is 90 deg, ie the angle between the force applied and displacement made is 90 deg, then no work is said to be done by the force. This is the case the work performed by centripetal force on a rotating body.


What is the work done by a body moving along a circular path?

The work done by a body moving along a circular path is zero if the force is perpendicular to the direction of motion, such as in the case of centripetal force. This is because the displacement is perpendicular to the force. If there is a component of the force in the direction of the motion, work is done, calculated as the dot product of the force and displacement vectors.


Explain why a centripetal force does not do work on a circularly moving object?

A centripetal force does not do work on a circularly moving object because the force is always directed towards the center of the circle, while the object moves tangentially to the circle. Since work is defined as force acting in the direction of displacement, the centripetal force and the displacement are perpendicular to each other, resulting in no work being done.


Why does work done by centripetal force is zero?

An object moves in a circle at constant speed. The work done by the centripetal force is zero because: 1. the displacement for each revolution is zero 2. the average force for each revolution is zero 3. there is no friction 4. the magnitude of the acceleration is zero 5. the centripetal force is perpendicular to the velocity


Is Work done by centripetal force is zero?

An object moves in a circle at constant speed. The work done by the centripetal force is zero because: 1. the displacement for each revolution is zero 2. the average force for each revolution is zero 3. there is no friction 4. the magnitude of the acceleration is zero 5. the centripetal force is perpendicular to the velocity