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Q.Find the force acting on a current carrying conductor in uniform magnetic field. Using it find the force between two parallel current carrying conductors. (Marks split: 2.5+2.5)

Jharkhand JacJAC Intermediate Board 2023Subjective· 5mImportance★★★★★
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The force on a current-carrying wire in a field is found by summing the force on each moving charge; applying this to a second wire immersed in the first wire's own field gives the mutual force law between parallel currents.

Force on a current-carrying conductor: A conductor of length ll carrying current II in an external field B⃗\vec B contains moving charge carriers, each feeling f⃗=qv⃗d×B⃗\vec f = q\vec v_d\times\vec B. Summing over all nn carriers in the segment (with I=nqvdAI=nqv_dA), the net force works out to:

F⃗=I(l⃗×B⃗)\vec F = I(\vec l\times \vec B), magnitude F=BIlsin⁡θF=BIl\sin\theta

direction given by the right-hand rule (θ\theta = angle between l⃗\vec l and B⃗\vec B).

Force between two parallel current-carrying conductors: Consider two long straight parallel wires, separated by distance dd, carrying currents I1I_1 and I2I_2.

Wire 1 produces a magnetic field at the location of wire 2 (by Ampere's law): B1=μ0I12πdB_1=\dfrac{\mu_0 I_1}{2\pi d}, directed perpendicular to wire 2.

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