For the network shown in the figure below, the value of the current \(i\) is:

     
1. \(\frac{18V}{5}\)
2. \(\frac{5V}{9}\)
3. \(\frac{9V}{35}\)
4. \(\frac{5V}{18}\)

Subtopic:  Wheatstone Bridge |
 77%
Level 2: 60%+
AIPMT - 2005

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A car battery of emf \(12~\text{V}\) and internal resistance \(5\times 10^{-2}~\Omega\) receives a current of \(60~\text{A}\) from an external source. The terminal voltage of the battery is:

1. \(12~\text{V}\) 2. \(9~\text{V}\)
3. \(15~\text{V}\) 4. \(20~\text{V}\)
Subtopic:  EMF & Terminal Voltage |
 55%
Level 3: 35%-60%
AIPMT - 2000

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If there are two bulbs of \((40~\text{W},200~\text{V}),\) and \((100~\text{W},200~\text{V}),\) then the correct relation for their resistance is:
1. \(R_{40}<R_{100}\)
2. \(R_{40}>R_{100}\)
3. \(R_{40}=R_{100}\)
4. no relation can be predicted

Subtopic:  Heating Effects of Current |
 88%
Level 1: 80%+
AIPMT - 2000

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When three identical bulbs are connected in series, the consumed power is \(10\) W. If they are now connected in parallel then the consumed power will be:
1. \(30\) W
2. \(90\) W
3. \(\frac{10}{3}\) W
4. \(270\) W

Subtopic:  Heating Effects of Current |
 70%
Level 2: 60%+
AIPMT - 1998

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The current in \(8~\Omega\) resistance is (in the figure below):

   

1. \(0.69\) A
2. \(0.92\) A
3. \(1.30\) A
4. \(1.6\) A

Subtopic:  Kirchoff's Voltage Law |
 59%
Level 3: 35%-60%
AIPMT - 1999

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The terminal potential difference of a cell is greater than its emf when:

1. A battery of less emf is connected in its series.
2. A battery of higher emf is connected in its series.
3. A battery of higher emf is connected in its parallel.
4. A battery of less emf is connected in its parallel.
Subtopic:  EMF & Terminal Voltage |
Level 3: 35%-60%
AIPMT - 1999

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A battery is charged at a potential of \(15\) V for \(8\) hours when the current flowing is \(10\) A. The battery on discharge supplies a current of \(5\) A for \(15\) hours. The mean terminal voltage during discharges is \(14\) V. The "Watt hour" efficiency of the battery is:
1. \(80\%\)
2. \(90\%\)
3. \(87.5\%\)
4. \(82.5\%\)

Subtopic:  EMF & Terminal Voltage |
 70%
Level 2: 60%+
AIPMT - 2004

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Five equal resistances each of resistance \(R\) are connected as shown in the figure below. A battery of \(V\) volts is connected between \(A\) and \(B\). The current flowing in \(AFCEB \) will be:

        

1. \(\dfrac{V}{R}\)

2. \(\dfrac{V}{2R}\)

3. \(\dfrac{2V}{R}\)

4. \(\dfrac{3V}{R}\)

Subtopic:  Wheatstone Bridge |
 59%
Level 3: 35%-60%
AIPMT - 2004

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The specific resistance of a conductor increases with:

1. increase in temperature.
2. increase in cross-section area.
3. increase in cross-section and decrease in length.
4. decrease in cross-section area.

Subtopic:  Derivation of Ohm's Law |
 81%
Level 1: 80%+
AIPMT - 2002

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For a cell, the terminal potential difference is \(2.2~\text V\) when the circuit is open and reduces to \(1.8~\text V\) when the cell is connected to the resistance of \(R = 5~\Omega.\) The internal resistance of cell (\(r\)) is:

1. \(\dfrac{10}{9}~ \Omega\) 2. \(\dfrac{9}{10}~ \Omega\)
3. \(\dfrac{11}{9}~ \Omega\) 4. \(\dfrac{5}{9}~ \Omega\)
Subtopic:  EMF & Terminal Voltage |
 73%
Level 2: 60%+
AIPMT - 2002

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