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Q.Establish a relation between drift velocity of free electrons and electric current.

(OR)
A battery of emf 10 V and internal resistance 3 Ω3\,\Omega is connected to a resistor. If the current in the circuit is 0.5 A, what is the resistance of the resistor?
Uttarakhand UbseUttarakhand Board Intermediate (Class 12) 2022Subjective· 2mImportance★★★★★
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Current equals charge crossing a cross-section per second, giving I=neAvdI = neAv_d.

Relation between drift velocity and current:

Consider a conductor of cross-sectional area AA with free-electron number density nn (electrons per unit volume), each carrying charge ee, drifting with average drift velocity vdv_d under an applied electric field.

In a small time interval Δt\Delta t, each electron moves a distance vdΔtv_d\Delta t. So all the free electrons within a cylindrical volume of length vdΔtv_d\Delta t and cross-section AA (i.e. volume AvdΔtAv_d\Delta t) cross the cross-section in that time.

Number of such electrons =n A vd Δt= n\,A\,v_d\,\Delta t.

Charge crossing the area in time Δt\Delta t: ΔQ=(nAvdΔt) e\Delta Q = (nAv_d\Delta t)\,e.

Current, I=ΔQΔt=neAvdI = \dfrac{\Delta Q}{\Delta t} = neAv_d

This is the required relation between drift velocity and electric current.

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