A thin conducting ring of the radius \(R\) is given a charge \(+Q.\) The electric field at the centre \(O\) of the ring due to the charge on the part \(AKB\) of the ring is \(E.\) The electric field at the centre due to the charge on the part \(ACDB\) of the ring is:
              

1. \(3E\) along \(KO\)
2. \(E\) along \(OK\)
3. \(E\) along \(KO\)
4. \(3E\) along \(OK\)
Subtopic:  Electric Field |
 75%
Level 2: 60%+
AIPMT - 2008
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The velocity of electromagnetic radiation in a medium of permittivity ε0 and permeability μ0 is given by:

1.  εoμo

2.  μoεo

3.  1μoεo

4.  μoεo

Subtopic:  Properties of EM Waves |
 92%
Level 1: 80%+
AIPMT - 2008
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A point performs simple harmonic oscillation of period \(\mathrm{T}\) and the equation of motion is given by; \(x=a \sin (\omega t+\pi / 6)\). After the elapse of what fraction of the time period, the velocity of the point will be equal to half of its maximum velocity?
1. \( \frac{T}{8} \)

2. \( \frac{T}{6} \)

3. \(\frac{T}{3} \)

4. \( \frac{T}{12}\)

Subtopic:  Linear SHM |
 71%
Level 2: 60%+
AIPMT - 2008
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A long solenoid has \(500\) turns. When a current of \(2 ~\text{A}\) is passed through it, the resulting magnetic flux linked with each turn of the solenoid is \(4\times 10^{-3} ~\text{Wb}\). The self-inductance of the solenoid is:
1. \(2.5 ~\text{H}\)
2. \(2.0 ~\text{H}\)
3. \(1.0 ~\text{H}\)
4. \(4.0 ~\text{H}\)

Subtopic:  Self - Inductance |
 80%
Level 1: 80%+
AIPMT - 2008
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A boy is trying to start a fire by focusing sunlight on a piece of paper using an equiconvex lens of a focal length of \(10\) cm. The diameter of the sun is \(1.39\times10^9\) m and its mean distance from the earth is \(1.5\times10^{11}\) m. What is the diameter of the sun's image on the paper?
 

1. \(9.2\times10^{-4}\) m 2. \(6.5\times10^{-4}\) m
3. \(6.5\times10^{-5}\) m 4. \(12.4\times10^{-4}\) m
Subtopic:  Lenses |
 60%
Level 2: 60%+
AIPMT - 2008
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In an AC circuit, the emf (e) and the current (I) at any instant are given respectively by 
e = E0sinωt 
I = I0sinωt-ϕ 
The average power in the circuit over one cycle of AC is:

1.  EoIo2

2.  EoIo2 sin ϕ

3.  EoIo2 cos ϕ

4.  EoIo

Subtopic:  RMS & Average Values |
 83%
Level 1: 80%+
AIPMT - 2008
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In the circuit shown, the current through the 4Ω resistors is 1 A when the points P and M are connected to a DC voltage source. The potential difference between the points M and N is:

            

1.  1.5 V

2.  1.0 V

3.  0.5 V

4.  3.2 V

Subtopic:  Combination of Resistors | EMF & Terminal Voltage |
 62%
Level 2: 60%+
AIPMT - 2008
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A particle moves in a straight line with a constant acceleration. It changes its velocity from \(10\) ms-1 to \(20\) ms-1 while covering a distance of \(135\) m in \(t\) seconds. The value of \(t\) is:

1. \(10\) 2. \(1.8\)
3. \(12\) 4. \(9\)
Subtopic:  Uniformly Accelerated Motion |
 80%
Level 1: 80%+
AIPMT - 2008
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A thin rod of length \(L\) and mass \(M\) is bent at its midpoint into two halves so that the angle between them is \(90^{\circ}\). The moment of inertia of the bent rod about an axis passing through the bending point and perpendicular to the plane defined by the two halves of the rod is:
1.  \(\frac{ML^2}{24}\)
2.  \(\frac{ML^2}{12}\)
3.  \(\frac{ML^2}{6}\)
4.  \(\frac{\sqrt{2}ML^2}{24}\)

Subtopic:  Moment of Inertia |
 73%
Level 2: 60%+
AIPMT - 2008
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A circular disc of radius \(0.2~\text{m}\) is placed in a uniform magnetic field of induction \(\frac{1}{\pi}~\text{Wb/m}^{2}\) in such a way that its axis makes an angle of \(60^{\circ}\) with \(\vec{B}.\) The magnetic flux linked with the disc is:
1. \(0.02~\text{Wb}\)
2. \(0.06~\text{Wb}\)
3. \(0.08~\text{Wb}\)
4. \(0.01~\text{Wb}\)
Subtopic:  Magnetic Flux |
 86%
Level 1: 80%+
AIPMT - 2008
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