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MCQ · Q2

Q.A conductor rod of length (l) is moving with velocity

(v) in a direction normal to a uniform magnetic field (B). What will be the magnitude of induced emf produced between the ends of the moving conductor? (A) BlvBlv (B) Blv2Blv^2 (C) 12Blv\frac{1}{2}Blv (D) Blv\frac{Bl}{v}
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From the flux rule (or, equivalently, from the Lorentz force F⃗=q(v⃗×B⃗)\vec{F}=q(\vec{v}\times\vec{B}) on the charge carriers inside the rod), a straight conductor of length l moving with velocity v perpendicular to a uniform field B develops a motional emf of magnitude e=Blve=Blv, with the maximum value occurring exactly when v is normal to B (as stated here), since then sin⁡θ=1\sin\theta=1 in the general form e=Blvsin⁡θe=Blv\sin\theta. None of the other options are dimensionally or physically consistent with this standard result. [!ANSWER] (A) BlvBlv

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