The universal gravitational constant is dimensionally represented as:
1. \(\left[ML^2T^{-1}\right]\)
2. \(\left[M^{-2}L^3T^{-2}\right]\)
3. \(\left[M^{-2}L^2T^{-1}\right]\)
4. \(\left[M^{-1}L^3T^{-2}\right]\)

Subtopic:  Dimensions |
 78%
Level 2: 60%+
AIPMT - 2004
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In India, electricity is supplied for domestic use at \(220~\text{V}.\) It is supplied at \(110~\text{V}\) in the USA. If the resistance of a \(60~\text{W}\) bulb for use in India is \(R\), the resistance of a \(60~\text{W}\) bulb for use in the USA will be:

1. \(2R\) 2. \(\dfrac{R}{4}\)
3. \(\dfrac{R}{2}\) 4. \(R\)
Subtopic:  Heating Effects of Current |
 82%
Level 1: 80%+
AIPMT - 2004
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The magnetic flux through a circuit of resistance \(R\) changes by an amount \(\Delta \phi\) in a time \(\Delta t\). Then the total quantity of electric charge \(Q\) that passes any point in the circuit during the time \(\Delta t\) is represented by:
1. \(Q= \frac{\Delta \phi}{R}\)
2. \(Q= \frac{\Delta \phi}{\Delta t}\)
3. \(Q=R\cdot \frac{\Delta \phi}{\Delta t}\)
4. \(Q=\frac{1}{R}\cdot \frac{\Delta \phi}{\Delta t}\)

Subtopic:  Faraday's Law & Lenz Law |
 85%
Level 1: 80%+
AIPMT - 2004
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A bullet of mass \(2~\text {gm}\) has a charge of \(2~\mu\text{C}.\) Through what potential difference must it be accelerated, starting from rest, to acquire a speed of \(10~\text{m/s}?\)
1. \(50~\text {kV}\)
2. \(5~\text {V}\)
3. \(50~\text {V}\)
4. \(5~\text {kV}\)

Subtopic:  Electric Potential |
 78%
Level 2: 60%+
AIPMT - 2004
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The equation of state for 5g of oxygen at a pressure P and temperature T, when occupying a volume V, will be: (where R is the gas constant)
1. PV = 5 RT
2. PV = (5/2) RT
3. PV = (5/16) RT
4. PV = (5/32) RT

Subtopic:  Ideal Gas Equation |
 84%
Level 1: 80%+
AIPMT - 2004
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If \(\lambda_m\) denotes the wavelength at which the radioactive emission from a black body at a temperature \(T\) K is maximum, then:
1. \(\lambda_m\) is independent of \(T\)

2. \(\lambda_m \propto T\)

3. \(\lambda_m \propto T^{-1}\)

4. \(\lambda_m \propto T^{-4}\)

Subtopic:  Wien's Displacement Law |
 87%
Level 1: 80%+
AIPMT - 2004
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The ratio of the radii of gyration of a circular disc about a tangential axis in the plane of the disc and of a circular ring of the same radius about a tangential axis in the plane of the ring will be:
1. \(2:1\)
2. 5 : 6
3. \(2:3\)
4. \(1:\) 2

Subtopic:  Moment of Inertia |
 77%
Level 2: 60%+
AIPMT - 2004
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A round disc of the moment inertia I2 about its axis perpendicular to its plane and passing through its centre is placed over another disc of moment of inertia I1 rotating with an angular velocity ω about the same axis. The final angular velocity of the combination of discs is:

1. ω

2. I1ωI1+I2

3. (I1+I2)ωI1

4. I2ωI1+I2

Subtopic:  Angular Momentum |
 79%
Level 2: 60%+
AIPMT - 2004
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A ball of mass 2 kg and another of mass 4 kg are dropped together from a 60 feet tall building. After a fall of 30 feet each towards the earth, their respective kinetic energies will be in the ratio of:

1. 1: 4

2. 1: 2

3. 1: 2

4. 2 :1

Subtopic:  Uniformly Accelerated Motion |
 84%
Level 1: 80%+
AIPMT - 2004
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The half-life of radium is about 1600 years. Out of 100 g of radium existing now, 25 g will remain undecayed after:

1. 6400 years

2. 2400 years

3. 3200 years

4. 4800 years

 81%
Level 1: 80%+
AIPMT - 2004
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