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II. Short Answer Questions · Q2

Q.Distinguish between intrinsic and extrinsic semiconductors.

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✓ Free question

Step 1. An intrinsic semiconductor is the pure crystal with no added impurity; its only charge carriers are thermally generated electron-hole pairs, always present in EQUAL numbers (nin_i), giving a modest, temperature-dependent conductivity.

Step 2. An extrinsic semiconductor has been deliberately doped with a pentavalent (donor) or trivalent (acceptor) impurity, which adds a large, engineered population of ONE carrier type -- majority carriers (electrons in n-type, holes in p-type) -- while the other carrier type remains a much smaller, thermally generated minority.

Step 3. Because doping can be controlled precisely (dopant type and concentration), an extrinsic semiconductor's conductivity is far higher and far more controllable than an intrinsic semiconductor's, which is why practical devices are always built from extrinsic material.

✓Final answer

Intrinsic = pure, undoped, nin_i(electrons) = nin_i(holes), low conductivity, set only by temperature. Extrinsic = doped (n-type or p-type), one carrier type is the majority and the other the minority, and conductivity is far higher and controllable by doping level.

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