For a particle in circular motion,the centripetal acceleration is

  • A
    Less than its tangential acceleration
  • B
    Equal to its tangential acceleration
  • C
    More than its tangential acceleration
  • D
    May be more or less than its tangential acceleration

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Similar Questions

Explain the effects of the radial component and the tangential component of the linear acceleration of a particle in circular motion.

$A$ particle at rest starts moving with a constant angular acceleration of $4 \ rad/s^2$ in a circular path. At what time will the magnitudes of its tangential acceleration and centrifugal acceleration be equal (in $s$)?

For a particle in a uniformly accelerated circular motion:

$A$ particle is in uniform circular motion. The equation of its trajectory is given by $(x-2)^2+y^2=25$,where $x$ and $y$ are in meters. The speed of the particle is $2 \text{ m/s}$. When the particle attains the lowest $y$ coordinate,the acceleration of the particle is (in $\text{m/s}^2$):

$A$ particle moves in the $xy$-plane with velocity $\vec{v} = x \hat{i} + yt \hat{j}$. At $t = \frac{x \sqrt{3}}{y}$,the tangential and normal accelerations are:

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