The quantities of heat required to raise the temperature of two solid copper spheres of radii \(r_1\) and \(r_2\) \((r_1=1.5~r_2)\) through \(1~\text{K}\) are in the ratio:

1. \(\dfrac{9}{4}\) 2. \(\dfrac{3}{2}\)
3. \(\dfrac{5}{3}\) 4. \(\dfrac{27}{8}\)
Subtopic:  Conduction |
 53%
Level 3: 35%-60%
NEET - 2020
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The average thermal energy for a mono-atomic gas is:
(\(k_B\) is Boltzmann constant and \(T\) absolute temperature)
1. \(\dfrac{3}{2}k_BT\) 2. \(\dfrac{5}{2}k_BT\)
3. \(\dfrac{7}{2}k_BT\) 4. \(\dfrac{1}{2}k_BT\)
Subtopic:  Kinetic Energy of an Ideal Gas |
 87%
Level 1: 80%+
NEET - 2020
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An AC voltage source is connected to a series \(LCR\) circuit. When \(L\) is removed from the circuit, the phase difference between current and voltage is \(\dfrac{\pi}{3}\). If \(C\) is instead removed from the circuit, the phase difference is again \(\dfrac{\pi}{3}\) between current and voltage. The power factor of the circuit is:
1. \(0.5\)
2. \(1.0\)
3. \(-1.0\)
4. zero

Subtopic:  Power factor |
 67%
Level 2: 60%+
NEET - 2020
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Two particles of mass \(5~\text{kg}\) and \(10~\text{kg}\) respectively are attached to the two ends of a rigid rod of length \(1~\text{m}\) with negligible mass. The centre of mass of the system from the \(5~\text{kg}\) particle is nearly at a distance of:
1. \(50~\text{cm}\)
2. \(67~\text{cm}\)
3. \(80~\text{cm}\)
4. \(33~\text{cm}\)

Subtopic:  Center of Mass |
 82%
Level 1: 80%+
NEET - 2020
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The phase difference between displacement and acceleration of a particle in a simple harmonic motion is:
1. \(\dfrac{3\pi}{2}\text{rad}\)
2. \(\dfrac{\pi}{2}\text{rad}\)
3. zero
4. \(\pi ~\text{rad}\)

Subtopic:  Simple Harmonic Motion |
 75%
Level 2: 60%+
NEET - 2020
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The Brewster's angle for an interface should be:
1. \(30^{\circ}<i_b<45^{\circ}\)
2. \(45^{\circ}<i_b<90^{\circ}\)
3. \(i_b=90^{\circ}\)
4. \(0^{\circ}<i_b<30^{\circ}\)

Subtopic:  Polarization of Light |
 76%
Level 2: 60%+
NEET - 2020
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Dimensions of stress are:

1. \( {\left[{ML}^2 {T}^{-2}\right]} \) 2. \( {\left[{ML}^0 {T}^{-2}\right]} \)
3. \( {\left[{ML}^{-1} {T}^{-2}\right]} \) 4. \( {\left[{MLT}^{-2}\right]}\)
Subtopic:  Dimensions |
 81%
Level 1: 80%+
NEET - 2020
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The colour code of resistance is given below:

The values of resistance and tolerance, respectively are:

1.  47 kΩ, 10%

2.  4.7 kΩ, 5%

3.  470 Ω, 5%

4.  470 kΩ, 5%

 69%
Level 2: 60%+
NEET - 2020
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A spherical conductor of radius \(10~\text{cm}\) has a charge of \(3.2 \times 10^{-7}~\text{C}\) distributed uniformly. What is the magnitude of the electric field at a point \(15~\text{cm}\) from the centre of the sphere? 
\(\left(\frac{1}{4\pi \varepsilon _0} = 9\times 10^9~\text{N-m}^2/\text{C}^2\right)\)

1. \(1.28\times 10^{5}~\text{N/C}\)
2. \(1.28\times 10^{6}~\text{N/C}\)
3. \(1.28\times 10^{7}~\text{N/C}\)
4. \(1.28\times 10^{4}~\text{N/C}\)

Subtopic:  Electric Field |
 67%
Level 2: 60%+
NEET - 2020
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What would be the torque about the origin when a force \(3\hat{j}~\text N\) acts on a particle whose position vector is \(2\hat{k}~\text m?\)

1. \(6\hat{j}~\text{N-m}\)  2. \(-6\hat{i}~\text{N-m}\) 
3. \(6\hat{k}~\text{N-m}\)  4. \(6\hat{i}~\text{N-m}\)
Subtopic:  Torque |
 75%
Level 2: 60%+
NEET - 2020
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