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The diagram shows a circuit used to investigate the variation of current with potential difference for a semiconductor diode in forward bias - Leaving Cert Physics - Question 4 - 2008

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The diagram shows a circuit used to investigate the variation of current with potential difference for a semiconductor diode in forward bias. (i) Name the apparatus... show full transcript

Worked Solution & Example Answer:The diagram shows a circuit used to investigate the variation of current with potential difference for a semiconductor diode in forward bias - Leaving Cert Physics - Question 4 - 2008

Step 1

Name the apparatus X. What does it measure?

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Answer

The apparatus X is called a milliameter or galvanometer. It measures current in milliamperes (mA) or in amps (A).

Step 2

Name the apparatus Y. What does it do?

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Answer

The apparatus Y is a variable resistor or a potentiometer. It adjusts the resistance in the circuit, which allows for the measurement of voltage, potential, and current.

Step 3

What is the function of the 330 Ω resistor in this circuit?

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Answer

The 330 Ω resistor serves to protect the diode by limiting the current that can flow through it. This helps prevent the diode from being damaged by excessive current.

Step 4

Draw a graph on graph paper of the current against the potential difference.

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Answer

To draw the graph, plot the potential difference values along the horizontal X-axis from 0.0 V to 1.0 V and the current values along the vertical Y-axis from 0 to 100 mA. The graph will typically show a curve that increases rapidly at lower voltages and then levels off at higher voltages.

Step 5

What does the graph tell you about the variation of current with potential difference for a semiconductor diode?

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Answer

The graph indicates that the current through the diode increases rapidly for potential differences below 0.6 V. Beyond this point, the current increases more gradually, suggesting a non-linear relationship. Specifically, the graph shows that as the potential difference increases, the current also rises significantly but does not increase linearly; rather, it follows an exponential pattern typical of semiconductor diodes.

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