Mixed

When a body is rotating in horizontal circle with the help of thread which provides centripetal force?

When a body is rotating in horizontal circle with the help of thread which provides centripetal force?

The direction of acceleration of stone is towards the centre of the circular path. Force of tension in the string provides the centripetal force required for circular motion. The reaction of tension away from the centre of the circular path.

When a stone is whirled in a horizontal circle by means of a string the centripetal force is applied by?

Examples of Centripetal Force: When a stone tied to one end of a string is whirled horizontally, there is an inward force exerted by the string on the stone called tension. This force provides necessary centripetal force for circular motion.

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What must you do for the stone to move in a horizontal circle?

So for an object moving in a circle, there must be an inward force acting upon it in order to cause its inward acceleration. This is sometimes referred to as the centripetal force requirement. objects in motion tend to stay in motion with the same speed and the same direction unless acted upon by an unbalanced force.

When Stone is whirled around at the end of a string and is rotated What is the pull of the string called?

The pull of the string is known as centripetal force.

When a stone tied at the end of a string is whirled then the work done by the force of tension on the stone is?

zero
Therefore, work done is zero.

What is the difference between motion of a freely falling stone and motion of a stone tied to a thread and whirled with hand?

Q11: What is the difference between motion of a falling stone and motion of a stone tied to a tread and whirled with hand? Ans: The motion of a falling stone is rectilinear motion and motion of a stone tied to a tread and whirled with hand is circular motion.

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When a body is whirled in a horizontal circle?

A body is whirled in a horizontal circle of radius 20cm. It has angular velocity if 10 rad/s. What is the linear velocity at any point on the circular path?

When a stone tied to a string is whirled in a horizontal circle and the string suddenly breaks the stone flies off tangentially name the property for this observation?

Due to inertia, the stone continues to move along the tangent to circular path, and flies off tangentially to the circular path.

When a stone is tied to a string and whirled in a circular path then the displacement of the stone is to the circular path?

Work done by the stone is zero. Here, in circulation path displacement is zero.

When a stone is tied to a string?

A stone tied to a string of length l is whirled in a vertical circle with the other end of the string at the centre. At a certain instant of time, the stone is at its lowest position and has a speed u. The magnitude in its velocity as it reaches a position, where the string is horizontal, is.