In a guitar, two strings \(A\) and \(B\) made of same material are slightly out of tune and produce beats of frequency \(6~\text{Hz}\). When tension in \(B\) is slightly decreased, the beat frequency increases to \(7~\text{Hz}\).  If the frequency of \(A\) is \(530~\text{Hz}\), the original frequency of \(B\) will be:

1. \(524~\text{Hz}\) 2. \(536~\text{Hz}\)
3. \(537~\text{Hz}\) 4. \(523~\text{Hz}\)
Subtopic:  Beats |
 67%
Level 2: 60%+
NEET - 2020
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The mean free path for a gas, with molecular diameter \(d\) and number density \(n,\) can be expressed as:

1. \( \dfrac{1}{\sqrt{2} n \pi {d}^2} \) 2. \( \dfrac{1}{\sqrt{2} n^2 \pi {d}^2} \)
3. \(\dfrac{1}{\sqrt{2} n^2 \pi^2 d^2} \) 4. \( \dfrac{1}{\sqrt{2} n \pi {d}}\)
Subtopic:  Mean Free Path |
 84%
Level 1: 80%+
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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A short electric dipole has a dipole moment of \(16 \times 10^{-9} ~\text{C-}\text{m}. \) The electric potential due to the dipole at a point at a distance of \(0.6~\text{m}\) from the centre of the dipole situated on a line making an angle of \(60^{\circ}\) with the dipole axis is:
\(\left( \dfrac{1}{4\pi \varepsilon_0}= 9\times 10^{9}~\text{N-m}^2/\text{C}^2 \right) \)

1. \(200~\text{V}\) 2. \(400~\text{V}\)
3. zero 4. \(50~\text{V}\)
Subtopic:  Energy of Dipole in an External Field |
 69%
Level 2: 60%+
NEET - 2020
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A long solenoid of \(50~\text{cm}\) length having \(100\) turns carries a current of \(2.5~\text{A}\). The magnetic field at the centre of the solenoid is: 
\(\big(\mu_0 = 4\pi\times 10^{-7}~\text{TmA}^{-1} \big)\)
1. \(3.4\times 10^{-4}~\text{T}\)
2. \(6.28\times 10^{-5}~\text{T}\)
3. \(3.14\times 10^{-5}~\text{T}\)
4. \(6.28\times 10^{-4}~\text{T}\)

Subtopic:  Magnetic Field due to various cases |
 69%
Level 2: 60%+
NEET - 2020
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The energy required to break one bond in DNA is \(10^{-20}~\text{J}\). This value in eV is nearly: 
1. \(0.6\)
2. \(0.06\)
3. \(0.006\)
4. \(6\)

Subtopic:  Dimensions |
 72%
Level 2: 60%+
NEET - 2020
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A wire of length \(L,\) area of cross section \(A\) is hanging from a fixed support. The length of the wire changes to \({L}_1\) when mass \(M\) is suspended from its free end. The expression for Young's modulus is:

1. \(\dfrac{{Mg(L}_1-{L)}}{{AL}}\) 2. \(\dfrac{{MgL}}{{AL}_1}\)
3. \(\dfrac{{MgL}}{{A(L}_1-{L})}\) 4. \(\dfrac{{MgL}_1}{{AL}}\)
Subtopic:  Young's modulus |
 79%
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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Taking into account the significant figures, what is the value of \((9.99~\text{m}-0.0099~\text{m})\)?
1. \(9.98~\text{m}\) 2. \(9.980~\text{m}\)
3. \(9.9~\text{m}\) 4. \(9.9801~\text{m}\)
Subtopic:  Significant Figures |
 71%
Level 2: 60%+
NEET - 2020
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Light of a frequency of \(1.5\) times the threshold frequency is incident on a photosensitive material. What happens to the photoelectric current when the frequency is cut in half and the intensity is doubled?
1. four times 2. one-fourth
3. zero 4. doubled
Subtopic:  Photoelectric Effect: Experiment |
 55%
Level 3: 35%-60%
NEET - 2020
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