When a particle moves in a circle with a uniform speed

1. its velocity and acceleration are both constant

2. its velocity is constant but the acceleration changes

3. its acceleration is constant but the velocity changes

4. its velocity and acceleration both change

Subtopic: Uniform Circular Motion |

67%

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Two cars having masses m_{1} and m_{2} move in circles of radii r_{1} and r_{2} respectively. If they complete the circles in equal time, the ratio of their angular speeds ω_{1} / ω_{2} is

1. m_{1} / m_{2}

2. r_{1} / r_{2}

3. m_{1}r_{1} / m_{2}r_{2}

4. 1

Subtopic: Uniform Circular Motion |

79%

From NCERT

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A car moves at a constant speed on a road as shown in the figure. The normal force by the road on the car is \(N_A\) and \(N_B\) when it is at the points \(A\) and \(B\) respectively.

1. | \( N_A=N_B \) |

2. | \( N_A>N_B \) |

3. | \(N_A<N_B\) |

4. | \(N_A\) and \(N_B\) | insufficient information to decide the relation of

Subtopic: Uniform Circular Motion |

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A particle of mass \(m\) is observed from an inertial frame of reference and is found to move in a circle of radius \(r\) with a uniform speed \(v\). The centrifugal force on it is:

1. | \(\frac{mv^2}{r}\) towards the centre |

2. | \(\frac{mv^2}{r}\) away from the centre |

3. | \(\frac{mv^2}{r}\) along the tangent through the particle |

4. | zero |

Subtopic: Uniform Circular Motion |

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A particle of mass m rotates with a uniform angular speed ω. It is viewed from a frame rotating about the Z-axis with a uniform angular speed ω_{0}. The centrifugal force on the particle is

1. \(\mathrm{m} \omega^{2} \mathrm{a}\)

2. \(\mathrm{m} \omega_{0}^{2} \mathrm{a}\)

3. \(\left(\frac{\omega+\omega_{0}}{2}\right)^{2} \mathrm{a}\)

4. \(\mathrm{m} \omega ~\omega_{0} \mathrm{a}\)

Subtopic: Uniform Circular Motion |

52%

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A particle is kept fixed on a turntable rotating uniformly. As seen from the ground, the particle goes in a circle, its speed is 20 cm/s and acceleration is 20 cm/s^{2}. The particle is now shifted to a new position to make the radius half of the original value. The new values of the speed and acceleration will be :

1. 10 cm/s, 10 cm/s^{2}

2. 10 cm/s, 80 cm/s^{2}

3. 40 cm/s, 10 cm/s^{2}

4. 40 cm/s, 40 cm/s^{2}

Subtopic: Uniform Circular Motion |

59%

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Water in a bucket is whirled in a vertical circle with a string attached to it. The water does not fall down even when the bucket is inverted at the top of its path. We. conclude that in this position

1. \(\mathrm{mg}=\frac{\mathrm{mv}^{2}}{\mathrm{r}}\)

2. mg is greater than \(\frac{\mathrm{mv}^{2}}{\mathrm{r}}\)

3. mg is not greater than \(\frac{\mathrm{mv}^{2}}{\mathrm{r}}\)

4. mg is not less than \(\frac{\mathrm{mv}^{2}}{\mathrm{r}}\)

Subtopic: Uniform Circular Motion |

59%

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A stone of mass m tied to a string of length l is rotated in a circle with the other end of the string as the centre. The speed of the stone is v. If the string breaks, the stone will move

1. towards the centre

2. away from the centre

3. along a tangent

4. will stop

Subtopic: Uniform Circular Motion |

76%

From NCERT

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A coin placed on a rotating turntable just slips if it is placed at a distance of 4 cm from the centre. If the angular velocity of the turntable is doubled, it will just slip at a distance of

1. 1 cm

2. 2 cm

3. 4 cm

4. 8 cm

Subtopic: Uniform Circular Motion |

67%

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A motorcycle is going on an overbridge of radius R. The driver maintains a constant speed. As the motorcycle is ascending on the overbridge, the normal force on it

1. increases

2. decreases

3. remains the same

4. fluctuates

Subtopic: Uniform Circular Motion |

56%

From NCERT

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