Simulation · Physics · Class 12
How fast do electrons really move in a wire?
From the lesson Electron drift and where resistivity comes from in Current Electricity. Change the values and watch what happens.
The idea behind it
NCERT § "Drift of Electrons and the Origin of Resistivity"
- Free electrons collide frequently with the ions of the lattice. The average time between successive collisions is the relaxation time τ.
- An applied field E gives each electron an acceleration −eE/m between collisions, producing a small average velocity opposite to E, the drift velocity v_d = −eEτ/m.
- The current through a conductor of area A with n free electrons per unit volume is I = neAv_d.
- Drift speeds are very small, typically a fraction of a millimetre to a few millimetres per second, while the random thermal speeds of electrons are very large.
- A lamp lights almost at once when switched on because the electric field is set up along the whole wire nearly instantly, starting all the electrons drifting together; it is not because electrons rush from the switch.
- Combining the two results gives the resistivity in terms of microscopic quantities: ρ = m/(ne²τ).
- For a wire of non-uniform cross-section carrying a steady current, the current is the same at every section, so the drift speed is larger where the wire is thinner.
More simulations in Current Electricity
4 more
Stretch a wire and watch its resistanceIn: Electric currents in conductors and Ohm's lawWhy the terminal voltage is less than the emfIn: Cells, emf and internal resistanceTwo cells: in series, in parallel, and one reversedIn: Cells in series and in parallelBalance a Wheatstone bridgeIn: Wheatstone bridge