NCERT Exemplar · Q24
Q.A resistor is connected across a battery of emf of negligible internal resistance, forming a single loop in which a steady current flows.
(a) How much energy is absorbed by the conduction electrons in going from the initial state of no current (ignore thermal motion) to the steady state in which they move with the drift velocity?
(b) The electrons give up energy at the rate of per second to thermal energy. What time scale would one associate with the energy in part (a)? Take the number density of electrons , the length of the circuit , and the cross-sectional area .
Uttarakhand UbseSubjective· 3mImportance★★★★★
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Start your 14-day free trial to unlock the full solution →The steady current is , corresponding to a tiny drift speed . Summing the drift kinetic energy of all conduction electrons gives only . Compared with the ohmic dissipation, that energy corresponds to an astonishingly short time scale , far shorter than an electron's collision time — showing the drift KE is utterly negligible next to the heat continuously generated.
Given / preliminary
Drift velocity
From ,
(a) Energy absorbed by the electrons
The number of conduction electrons in the circuit is
Each acquires drift kinetic energy (with ), so the total energy absorbed is
(b) Associated time scale …
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