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Q.The magnetic field dB⃗ due to a small current element dl⃗ at a distance of r⃗ and element carrying current I is –

(a) dB⃗ = (μ0/4π) × (I dl⃗ × r⃗)/r
(b) dB⃗ = (μ0/4π) × (I dl⃗ × r⃗)/r²
(c) dB⃗ = (μ0/4π) × (I dl⃗ × r⃗)/r³
(d) dB⃗ = (μ0/4π) × (I dl⃗ × r⃗)/r⁴
Mizoram MbseMizoram Board of School Education HSSLC 2023MCQ· 1mImportance★★★★★
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The Biot–Savart law gives the magnetic field of a current element; written with the position VECTOR r⃗\vec r (not the unit vector), the denominator carries one extra power of rr.

Why: The standard form uses the unit vector r^\hat r: dB⃗=μ04πI dl⃗×r^r2d\vec B=\dfrac{\mu_0}{4\pi}\dfrac{I\,d\vec l\times\hat r}{r^2}. Since r^=r⃗/r\hat r=\vec r/r, substituting gives dB⃗=μ04πI dl⃗×r⃗r3d\vec B=\dfrac{\mu_0}{4\pi}\dfrac{I\,d\vec l\times \vec r}{r^{3}} — an extra factor of rr appears …

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