Question:

On doping, the conductivity of a semiconductor:

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Doping a semiconductor increases its conductivity by introducing extra charge carriers (electrons or holes).
Updated On: Feb 3, 2026
  • Increases
  • Remains same
  • Decreases
  • None of these
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The Correct Option is A

Solution and Explanation

Step 1: Understanding doping in semiconductors.
Doping is the process of adding small amounts of impurities to a semiconductor to change its electrical properties. The process introduces extra charge carriers (either electrons or holes) into the material, thus increasing its conductivity.
Step 2: Effect of doping.
- N-type doping adds extra electrons, increasing the number of negative charge carriers.
- P-type doping creates holes (positive charge carriers), which also increases conductivity.
Step 3: Conclusion.
Thus, doping increases the conductivity of a semiconductor, corresponding to option (A).
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