A filament lamp has a resistance of 180 Ω when the current in it is 500 mA.
What is the power transformed in the lamp?
45 W
50 W
90 W
1400 W
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Exam code: 9702
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Potential Difference & Power
A filament lamp has a resistance of 180 Ω when the current in it is 500 mA.
What is the power transformed in the lamp?
45 W
50 W
90 W
1400 W
Choose your answer
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A 12 V battery is charged for 20 minutes by connecting it to a source of electromotive force (e.m.f.). The battery is supplied with 7.2 × 104 J of energy in this time.
How much charge flows into the battery?
5.0 C
60 C
100 C
6000 C
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The diagram shows four heaters and the current in each.
Which heater has the greatest power dissipation ?

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What is the correct definition for potential difference?
Energy transferred per unit charge
Energy transferred per unit current
Power transfer per unit charge
Work done per unit current
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The diagrams show two different circuits.

The cells in each circuit have the same electromotive force and zero internal resistance. The three resistors each have the same resistance R.
In the circuit on the left, the power dissipated in the resistor is P.
What is the total power dissipated in the circuit on the right?
P
2P
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The potential difference across a component in a circuit is 2.0 V.
How many electrons must flow through this component in order for it to be supplied with 4.8 J of energy?
2.6 × 1018
1.5 × 1019
3.0 × 1019
6.0 × 1019
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Two lamps are connected in series to a 250V power supply. One lamp is rated 240V, 60W and the other is rated 10V, 2.5W.
Which statement most accurately describes what happens ?
both lamps light at less than their normal brightness
both lamps light normally
only the 60 W lamp lights
the 10 V lamp blows
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A power cable X has resistance R and carries current I.
A second cable Y has resistance 2R and carries current
What is the ratio ?
2
4
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In a simple electrical circuit, the current in a resistor is measured as (2.50 ± 0.05) mA. The resistor is marked as having a value of 4.7Ω ± 2 %.
If these values were used to calculate the power dissipated in the resistor, what would be the percentage uncertainty in the value obtained?
2 %
4 %
6 %
8 %
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A battery, with a constant internal resistance, is connected to a resistor of resistance 250 Ω, as shown.

The current in the resistor is 40 mA for a time of 60 s. During this time 6.0 J of energy is lost in the internal resistance.
What is the energy supplied to the external resistor during the 60 s and the e.m.f of the battery ?
| Energy / J | E. m. f / V |
A B C D | 2.4 2.4 24 24 | 2.4 7.5 10.0 12.5 |
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The charge that an electric battery can deliver is specified in ampere-hours.
For example, a battery of capacity 40 ampere-hours could supply, when fully charged, 0.2 A for 200 hours.
What is the maximum energy that a fully charged 12 V, 40 ampere-hour battery could supply ?
1.7 kJ
29 kJ
1.7 MJ
29 MJ
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The amount of energy transferred when 10 C of charge passes through a p. d. of 20 V is the same as the energy needed to raise a 2 kg mass through a distance x.
Take gravitational field strength to be 10 N kg–1.
What is the value of x?
0.1 m
1.0 m
10 m
100 m
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The ratings of two lamps are as follows:
X | 230 V, 100 W |
Y | 230 V, 60 W |
During normal operation, which of the lamps will have larger current and resistance?
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Two lightbulbs, X and Y, are in parallel and are attached to a cell which has a potential difference of 75 V. Lightbulb X has a resistance of 350 Ω and Lightbulb Y has a resistance of 500 Ω. The power of Lightbulbs X and Y are PX and PY respectively.
What is the value of the ratio ?
2
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What is the effect on the current and power of a fixed resistor when the voltage through the resistor doubles?
| Current | Power |
A. | Quadruples | Doubles |
B. | Doubles | Doubles |
C. | Doubles | Quadruples |
D. | Halves | Doubles |
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Two resistors, X and Y, are in series with a cell that has a potential difference of V. The resistance of X and Y is R and respectively.
Given that the charge through both resistors is 6 C, what is the power and work done by X?
| Work done | Power |
A. | 2V | |
B. | 3V | |
C. | 4V |
|
D. | 6V |
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