In producing chlorine through electrolysis, 100 W power at 125 V is being consumed.
The liberation of chlorine per min is:
(ECE of chlorine is 0.367×10-6 kg/C)
1. 17.6 mg 2. 21.3 mg
3. 24.3 mg 4. 13.6 mg
Subtopic:  Faraday’s Law of Electrolysis |
 63%
Level 2: 60%+
AIPMT - 2006
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In the circuit shown below, if a conducting wire is connected between points \(A\) and \(B\), the current in this wire will: (All resistances are given in ohms)
         
1. flow from \(A\) to \(B\)
2. flow in the direction which will be
decided by the value of \(V\)
3. be zero
4. flow from \(B\) to \(A\)
Subtopic:  Kirchoff's Voltage Law |
 55%
Level 3: 35%-60%
AIPMT - 2006
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A rectangular block of mass m and area of cross-section A floats in a liquid of density ρ. If it is given a small vertical displacement from equilibrium, it undergoes oscillation with a time period T. Then:
1. T∝ρ
2. T∝1A
3. T∝1ρ
4. T∝1m

Subtopic:  Simple Harmonic Motion |
 53%
Level 3: 35%-60%
AIPMT - 2006
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A Carnot engine whose sink is at \(300~\text{K}\) has an efficiency of \(40\%.\) By how much should the temperature of the source be increased to increase its efficiency by \(50\%\) of its original efficiency?
1. \(275~\text{K}\) 2. \(325~\text{K}\)
3. \(250~\text{K}\) 4. \(380~\text{K}\)
Subtopic:  Carnot Engine |
 63%
Level 2: 60%+
AIPMT - 2006
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When a charged particle with velocity \(\vec v\) is subjected to an induction magnetic field \(\vec B,\) the force on it is non-zero. What does this imply?
1. Angle between \(\vec v\) and \(\vec {B}\) is necessarily \(90^{\circ}\).
2. Angle between \(\vec v\) and \(\vec {B}\) can have any value other than \(90^{\circ}\).
3. Angle between \(\vec v\) and \(\vec {B}\) can have any value other than zero and \(180^{\circ}\).
4. Angle between \(\vec v\) and \(\vec {B}\) is either zero or \(180^{\circ}\).
Subtopic:  Lorentz Force |
 70%
Level 2: 60%+
AIPMT - 2006
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Two cells having the same emf, are connected in series through an external resistance R. Cells have internal resistance r1 and r2 respectively. When the circuit is closed, the potential difference across the first cell is zero. The value of R is:

1. r1-r2

2. r1+r22

3. r1-r22

4. r1+r2

Subtopic:  Grouping of Cells |
 51%
Level 3: 35%-60%
AIPMT - 2006
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A black body at \(1227^\circ\text{C}\) emits radiations with maximum intensity at a wavelength of \(5000~\mathring {A}\). If the temperature of the body is increased by \(1000^\circ\text{C},\) the maximum intensity will be observed at:
1. \(4000~\mathring {A}\)
2. \(5000~\mathring {A}\)
3. \(6000~\mathring {A}\)
4. \(3000~\mathring {A}\)

Subtopic:  Wien's Displacement Law |
 60%
Level 2: 60%+
AIPMT - 2006
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Two circular coils \(1\) and \(2\) are made from the same wire but the radius of the \(1\)st coil is twice that of the \(2\)nd coil. What is the ratio of the potential difference applied across them so that the magnetic field at their centres is the same?
1. \(3\)
2. \(4\)
3. \(6\)
4. \(2\)

Subtopic:  Magnetic Field due to various cases |
 59%
Level 3: 35%-60%
AIPMT - 2006
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A transistor-oscillator using a resonant circuit with an inductance \(L\) (of negligible resistance) and a capacitance \(C\) has a frequency \(f.\) If \(L\) is doubled and \(C\) is changed to \(4C,\) the frequency will be:
1. \(f/4\)
2. \(8f\)
3. \(f/2\sqrt2\)
4. \(f/2\)

 74%
Level 2: 60%+
AIPMT - 2006
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The binding energy of deuteron is \(2.2~\text{MeV}\) and that of \(_2\mathrm{He}^{4}\) is \(28~\text{MeV}\). If two deuterons are fused to form one \(_{2}\mathrm{He}^{4}\), then the energy released is:
1. \(25.8~\text{MeV}\)
2. \(23.6~\text{MeV}\)
3. \(19.2~\text{MeV}\)
4. \(30.2~\text{MeV}\)

Subtopic:  Nuclear Binding Energy |
 75%
Level 2: 60%+
AIPMT - 2006
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