An electric current flows in a conductor when there is a potential difference between its ends - Leaving Cert Physics - Question 9 - 2008
Question 9
An electric current flows in a conductor when there is a potential difference between its ends.
(i) What is an electric current?
(ii) Give two effects of an elect... show full transcript
Worked Solution & Example Answer:An electric current flows in a conductor when there is a potential difference between its ends - Leaving Cert Physics - Question 9 - 2008
Step 1
What is an electric current?
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Answer
An electric current is the flow of electric charge, typically measured in amperes (A). It is the movement of electrons through a conductor, such as a wire, created by a potential difference.
Step 2
Give two effects of an electric current.
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Heating Effect: When electric current flows through a conductor, it produces heat due to resistance, which can be utilized in various applications, such as in heating elements.
Magnetic Effect: An electric current generates a magnetic field around the conductor, which is the principle behind electromagnets and electric motors.
Step 3
Name a source of potential difference.
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A common source of potential difference is a battery. Other sources include generators and thermocouples.
Step 4
Describe an experiment to investigate if a substance is a conductor or an insulator.
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Apparatus: Use a basic circuit setup that includes a power source (like a battery), an ammeter, leads, and a bulb.
Procedure: Connect the circuit using the substance in question. Place the substance in series with the circuit.
Observation: If the bulb lights up, the substance is a conductor; if it does not light, it is an insulator.
Conclusion: The experiment allows you to determine the conductive properties of the substance by observing the flow of current.
Step 5
Draw a circuit diagram to show how the headlamps are connected to the supply.
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The circuit diagram would show the power supply connected to two headlamps in parallel. Each headlamp would be connected to the supply independently, with lines representing the connections.
Step 6
What is the advantage of connecting them in parallel?
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The advantage of connecting the headlamps in parallel is that if one lamp fails, the other will still work. This ensures continued operation since each headlamp receives the same voltage directly from the power supply.
Step 7
Why should a fuse be included in such a circuit?
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A fuse is essential for safety; it prevents overheating or excessive current flow that could damage the electrical components. In case of a short circuit, the fuse will blow and disconnect the circuit, protecting the system.
Step 8
Calculate the total resistance in the circuit.
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For headlamps connected in parallel, the total resistance (R_total) can be calculated using the formula:
Rtotal1=R11+R21
Where each headlamp has a resistance of 20 Ω:
Rtotal1=201+201=202 Rtotal=220=10Ω
Step 9
Calculate the current flowing in the circuit.
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Using Ohm's law where V = IR:
I=RV
Substituting the values:
I=10Ω24V=2.4A
Therefore, the total current flowing in the circuit is 2.4 A.
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