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Q.The electron drift arises due to the force experienced by electrons in the electric field inside the conductor. But force should cause acceleration. Why then do the electrons acquire a steady average drift speed?

Uttarakhand UbseUttarakhand Board Intermediate (Class 12) 2025Subjective· 2mImportance★★★★★
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Electrons do accelerate between collisions, but frequent collisions with lattice ions randomise this gained velocity, leaving only a small, steady average drift velocity.

Inside a conductor, free electrons are in continuous random thermal motion (with high speeds, but in random directions, so their average velocity due to thermal motion alone is zero) and simultaneously undergo frequent collisions with the vibrating positive ions of the lattice (and with impurities).

When an electric field EE is applied, each electron does experience a force −eE-eE and hence an acceleration −eE/m-eE/m between successive collisions. However, at each collision the electron's velocity is randomised (the collision destroys the memory of the velocity gained from the field), so the electron starts accelerating afresh from a random velocity after every collision. Because the average time between collisions (the relaxation time τ\tau) is extremely short, the extra velocity gained due to the field just before each collision is small, and it does not accumulate indefinitely — averaged over many electrons and many collisions, this small extra velocity shows up as a steady, non-zero average drift velocity

vd=eEτmv_d = \frac{eE\tau}{m} …

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