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Read each statement below carefully and ...

Read each statement below carefully and state, with reasons, if it is true or false : (a) The net acceleration of a particle in circular motion is always along the radius of the circle towards the centre.
(b) The velocity vector of a particle at a point is always aling the tagent to the path of the partile at that point. ltbRgt (c ) The acceleration vector of a particle in uniform circular motion acraged over one cycle is a null vector.

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Read each staremnt below crefully and state, with reasons, if it is true or false : (a) The net acceleration of a particle in circular motion is always along the radius of the circle towards the centre. (b) The velocity vector of a particle at a point is always aling the tagent to the path of the partile at that point. ltbRgt (c ) The acceleration vector of a particle in uniform circular motion acraged over one cycle is a null vector.

Read each statement below carefully and state, with reasons, if it is true or false : The net acceleration of a particle in circular motion is always along the radius of the circle towards the centre.

The acceleration vector of a particle in uniform circular motion averaged over the cycle is a null vector. This statement is

Read each statement below carefully and state, with reasons, if it is true or false : The acceleration vector of a particle in uniform circular motion averaged over one cycle is a null vector.

The average acceleration vector for a particle having a uniform circular motion is

Read each statement below carefully and state with reasons, if it is true or false. Three vectors not lying in a plane can never add up to give a null vector.

Velocity vector and acceleration vector in a uniform circular motion are related as

Velocity vector and acceleration vector in a uniform circular motion are related as

Read each statement below carefully, and state, with reasons, if it is true or false : A wheel moving down a perfectly frictionless inclined plane will undergo slipping (not rolling) motion

SL ARORA-Motion in a Plane-Excercise
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