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Question 32 of 55

Q.a) Establish Ohm's law from the concept of drift velocity of free electrons. b) Define mobility of free electrons. c) A potential difference of 5 volts is applied across a conductor of length 10 cm. Find the mobility of an electron if the drift velocity of an electron is 2.5×10⁻² cm s⁻¹.

West Bengal WbchseWest Bengal HS (WBCHSE) Board 2016Subjective· 5mImportance★★★★★
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Free electrons drift with velocity vd proportional to the applied field E (vd = μE); combining this with I = neAvd gives Ohm's law, and the numeric part evaluates to μ = 5 × 10⁻⁶ m²V⁻¹s⁻¹.

(a) Ohm's law from drift velocity: In a conductor of free-electron number density n, cross-sectional area A, under an applied electric field E, each electron experiences a force −eE and accelerates between collisions, acquiring an average (drift) velocity vd = eEτ/m (τ = average relaxation time between collisions, m = electron mass), i.e. vd ∝ E.

The current is I = neAvd (n = number density, e = electron charge, A = area). Substituting vd:

I = neA(eEτ/m) = (ne²τA/m)E

Since E = V/L (L = length of conductor), I = (ne²τA/mL)V, i.e. I ∝ V — this is Ohm's law, with conductance (1/R) = ne²τA/(mL), a constant for a given conductor at constant temperature.

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