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Q.State and explain Ampere's Law.

Telangana TsbieTelangana Board of Intermediate Education 2018Subjective· 4mImportance★★★★★
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Ampere's law relates the circulation of the magnetic field around a closed loop to the current threading through it, providing a quick method to find B for symmetric current configurations.

Statement:

Ampere's Circuital Law states that the line integral of the magnetic field B⃗\vec{B} around any closed loop (called an Amperian loop) is equal to μ0\mu_0 (the permeability of free space) times the total (net) current II passing through the surface bounded by that loop:

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

Here the closed loop can be of any shape, but is usually chosen to match the symmetry of the current distribution to simplify the calculation.

Explanation:

The direction of circulation around the loop and the direction taken as positive for the enclosed current are related by the right-hand rule: if the fingers of the right hand curl in the direction of traversal of the loop, the thumb points in the direction of positive current. Currents flowing in the opposite sense are counted as negative, and only the net current threading the loop contributes; a current outside the loop contributes zero net line integral.

Application example: For a long straight current-carrying wire, choosing a circular Amperian loop of radius rr centred on the wire (in a plane perpendicular to it), BB is constant in magnitude and always tangential to the loop by symmetry, so

B(2πr)=μ0I⇒B=μ0I2πrB (2\pi r) = \mu_0 I \quad\Rightarrow\quad B = \dfrac{\mu_0 I}{2\pi r} …

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