A capacitor is connected to a switch, a battery and a bulb as shown in the diagram - Leaving Cert Physics - Question d - 2012
Question d
A capacitor is connected to a switch, a battery and a bulb as shown in the diagram. When the switch is changed from position A to position B, the bulb lights briefly... show full transcript
Worked Solution & Example Answer:A capacitor is connected to a switch, a battery and a bulb as shown in the diagram - Leaving Cert Physics - Question d - 2012
Step 1
What happens to the capacitor when the switch is in position A?
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Answer
When the switch is in position A, the capacitor starts to charge. Initially, short-lived current flows into the capacitor, allowing it to store energy. The charging process continues until the voltage across the capacitor equals the battery voltage.
Step 2
Why does the bulb light when the switch is in position B?
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The bulb lights when the switch is in position B because the capacitor discharges through the circuit. At this point, the stored energy in the capacitor is released, causing current to flow momentarily, which makes the bulb illuminate.
Step 3
Why does the bulb light only briefly?
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The bulb lights only briefly because the capacitor discharges quickly. As it releases its stored energy, the potential difference decreases rapidly, leading to a transient current that diminishes until the capacitor is discharged.
Step 4
Calculate its charge when connected to a 6 V battery.
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To calculate the charge (Q) on the capacitor, we use the formula:
Q=CimesV
Given that the capacitance (C) is 200 µF (which is 200 × 10^{-6} F) and the voltage (V) is 6 V, we have:
Q=200imes10−6imes6=1.2imes10−3extC
Thus, the charge on the capacitor is 1.2 mC.
Step 5
Give a use for a capacitor.
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Capacitors can be used to store energy for applications such as radio tuning, filtering signals, or providing a quick discharge current for electronic circuits.
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