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Q.Write Ampere's circuital law. Determine the magnetic field at distance r from an infinite length straight current carrying wire. [1+2=3] OR Write Biot-Savart law. Determine the magnetic field at a point situated on the axis of a circular current carrying loop. [1+2=3]

Rajasthan RbseRajasthan Board Senior Secondary Examination 2025Subjective· 3mImportance★★★★★
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Ampere's circuital law relates the closed-loop line integral of the magnetic field to the current it encloses; symmetry makes it very easy to apply to an infinite straight wire.

Ampere's circuital law: The line integral of the magnetic field B⃗\vec{B} around any closed loop equals μ0\mu_0 times the total current enclosed by that loop:

∮B⃗⋅dl⃗=μ0Ienclosed\oint \vec{B}\cdot d\vec{l} = \mu_0 I_{enclosed}

Magnetic field due to an infinite straight current-carrying wire: Consider a long straight wire carrying current II. By symmetry, the field lines around the wire form concentric circles centred on the wire, and BB has the same magnitude at every point on a circle of radius rr around the wire, always tangential to that circle.

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