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Q.What is meant by drift velocity of free electrons in a metal? Establish a relation between the current flowing in a conductor and the drift velocity of free electrons in it.

Jharkhand JacJAC Intermediate Board 2025Subjective· 5mImportance★★★★★
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Free electrons in a metal move randomly at high speed due to thermal motion (net displacement zero), but an applied electric field superimposes a slow net drift on this motion; this drift velocity, multiplied by electron density, area, and charge, gives the current.

Drift velocity: In a conductor, free electrons are in continuous random thermal motion in all directions (very high speeds, but zero average velocity by symmetry, so no net current). When an electric field E is applied, each electron experiences a force -eE, and between collisions with the lattice ions it accelerates in the direction opposite to E (since electron charge is negative). This produces a small net average velocity superimposed on the random motion, called the drift velocity v_d, directed opposite to E (i.e. along conventional current direction).

Relation between current and drift velocity:

Consider a conductor of cross-sectional area A with free electron number density n (electrons per unit volume), each of charge magnitude e, drifting with speed v_d.

In a small time interval dt, each electron moves a distance v_d dt. So all electrons within a cylindrical volume of length v_d dt and cross-section A will cross a given cross-section of the conductor in that time. This volume is:

Volume = A (v_d dt)

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