Kinematics of Circular Motion
PHXI04:MOTION IN A PLANE

361840 A particle covers equal distance around a circular path, in equal intervals of time. Which of the following quantities connected with the motion of the particle remains constant with time?

1 Displacement
2 Velocity
3 Speed
4 Acceleration
PHXI04:MOTION IN A PLANE

361841 A man carrying a monkey on his shoulder does cycling smoothly on a circular track of radius \(9 m\) and completes 120 revolutions in 3 minutes. The magnitude of centripetal acceleration of monkey is (in \(m/{s^2}\) )

1 \(16{\pi ^2}\;m{s^{ - 2}}\)
2 zero
3 \(57600\,{\pi ^2}\;m{s^{ - 2}}\)
4 \(4{\pi ^2}\;m{s^{ - 2}}\)
PHXI04:MOTION IN A PLANE

361842 In a non - uniform circular motion, the ratio of tangential to radial acceleration is ( where \(r = \) radius of circle, \(v = \) speed of the particle, \(\alpha = \) angular acceleration)

1 \(\frac{{{\alpha ^2}{r^2}}}{v}\)
2 \(\frac{{{\alpha ^2}r}}{{{v^2}}}\)
3 \(\frac{{\alpha {r^2}}}{{{v^2}}}\)
4 \(\frac{{{v^2}}}{{{r^2}\alpha }}\)
PHXI04:MOTION IN A PLANE

361843 A particle moving with uniform speed in a circular path maintains:

1 Constant velocity
2 Constant acceleration
3 Constant velocity but varying acceleration
4 Varying velocity and varying acceleration
PHXI04:MOTION IN A PLANE

361840 A particle covers equal distance around a circular path, in equal intervals of time. Which of the following quantities connected with the motion of the particle remains constant with time?

1 Displacement
2 Velocity
3 Speed
4 Acceleration
PHXI04:MOTION IN A PLANE

361841 A man carrying a monkey on his shoulder does cycling smoothly on a circular track of radius \(9 m\) and completes 120 revolutions in 3 minutes. The magnitude of centripetal acceleration of monkey is (in \(m/{s^2}\) )

1 \(16{\pi ^2}\;m{s^{ - 2}}\)
2 zero
3 \(57600\,{\pi ^2}\;m{s^{ - 2}}\)
4 \(4{\pi ^2}\;m{s^{ - 2}}\)
PHXI04:MOTION IN A PLANE

361842 In a non - uniform circular motion, the ratio of tangential to radial acceleration is ( where \(r = \) radius of circle, \(v = \) speed of the particle, \(\alpha = \) angular acceleration)

1 \(\frac{{{\alpha ^2}{r^2}}}{v}\)
2 \(\frac{{{\alpha ^2}r}}{{{v^2}}}\)
3 \(\frac{{\alpha {r^2}}}{{{v^2}}}\)
4 \(\frac{{{v^2}}}{{{r^2}\alpha }}\)
PHXI04:MOTION IN A PLANE

361843 A particle moving with uniform speed in a circular path maintains:

1 Constant velocity
2 Constant acceleration
3 Constant velocity but varying acceleration
4 Varying velocity and varying acceleration
PHXI04:MOTION IN A PLANE

361840 A particle covers equal distance around a circular path, in equal intervals of time. Which of the following quantities connected with the motion of the particle remains constant with time?

1 Displacement
2 Velocity
3 Speed
4 Acceleration
PHXI04:MOTION IN A PLANE

361841 A man carrying a monkey on his shoulder does cycling smoothly on a circular track of radius \(9 m\) and completes 120 revolutions in 3 minutes. The magnitude of centripetal acceleration of monkey is (in \(m/{s^2}\) )

1 \(16{\pi ^2}\;m{s^{ - 2}}\)
2 zero
3 \(57600\,{\pi ^2}\;m{s^{ - 2}}\)
4 \(4{\pi ^2}\;m{s^{ - 2}}\)
PHXI04:MOTION IN A PLANE

361842 In a non - uniform circular motion, the ratio of tangential to radial acceleration is ( where \(r = \) radius of circle, \(v = \) speed of the particle, \(\alpha = \) angular acceleration)

1 \(\frac{{{\alpha ^2}{r^2}}}{v}\)
2 \(\frac{{{\alpha ^2}r}}{{{v^2}}}\)
3 \(\frac{{\alpha {r^2}}}{{{v^2}}}\)
4 \(\frac{{{v^2}}}{{{r^2}\alpha }}\)
PHXI04:MOTION IN A PLANE

361843 A particle moving with uniform speed in a circular path maintains:

1 Constant velocity
2 Constant acceleration
3 Constant velocity but varying acceleration
4 Varying velocity and varying acceleration
PHXI04:MOTION IN A PLANE

361840 A particle covers equal distance around a circular path, in equal intervals of time. Which of the following quantities connected with the motion of the particle remains constant with time?

1 Displacement
2 Velocity
3 Speed
4 Acceleration
PHXI04:MOTION IN A PLANE

361841 A man carrying a monkey on his shoulder does cycling smoothly on a circular track of radius \(9 m\) and completes 120 revolutions in 3 minutes. The magnitude of centripetal acceleration of monkey is (in \(m/{s^2}\) )

1 \(16{\pi ^2}\;m{s^{ - 2}}\)
2 zero
3 \(57600\,{\pi ^2}\;m{s^{ - 2}}\)
4 \(4{\pi ^2}\;m{s^{ - 2}}\)
PHXI04:MOTION IN A PLANE

361842 In a non - uniform circular motion, the ratio of tangential to radial acceleration is ( where \(r = \) radius of circle, \(v = \) speed of the particle, \(\alpha = \) angular acceleration)

1 \(\frac{{{\alpha ^2}{r^2}}}{v}\)
2 \(\frac{{{\alpha ^2}r}}{{{v^2}}}\)
3 \(\frac{{\alpha {r^2}}}{{{v^2}}}\)
4 \(\frac{{{v^2}}}{{{r^2}\alpha }}\)
PHXI04:MOTION IN A PLANE

361843 A particle moving with uniform speed in a circular path maintains:

1 Constant velocity
2 Constant acceleration
3 Constant velocity but varying acceleration
4 Varying velocity and varying acceleration