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Q.Obtain the expression for the force per unit length between two infinitely long straight parallel current carrying conductors placed in vacuum. Hence define the unit 'ampere'.

Karnataka PUCKarnataka II PUC Board 2025Subjective· 5mImportance★★★★★
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Each conductor lies in the magnetic field of the other and experiences a force. The force per unit length is FL=μ0I1I22πd\dfrac{F}{L}=\dfrac{\mu_0 I_1 I_2}{2\pi d}, and setting I1=I2=1 AI_1=I_2=1\,A, d=1 md=1\,m gives F/L=2×10−7F/L = 2\times10^{-7} N/m, which defines the ampere.

Set-up: Consider two infinitely long straight parallel conductors A and B in vacuum, separated by a distance dd, carrying steady currents I1I_1 and I2I_2 in the same direction.

Field of A at B: The magnetic field produced by conductor A at the location of conductor B is

B1=μ0I12πdB_1 = \frac{\mu_0 I_1}{2\pi d}

directed perpendicular to B (into the plane, by the right-hand rule).

Force on B: A length LL of conductor B carrying current I2I_2 in this field experiences a force

F2=B1I2L=μ0I1I2L2πdF_2 = B_1 I_2 L = \frac{\mu_0 I_1 I_2 L}{2\pi d}

Force per unit length on B:

F2L=μ0I1I22πd\frac{F_2}{L} = \frac{\mu_0 I_1 I_2}{2\pi d}

By symmetry, conductor A experiences an equal and opposite force due to the field of B (Newton's third law). Hence the mutual force per unit length between the two conductors is

FL=μ0I1I22πd\boxed{\frac{F}{L} = \frac{\mu_0 I_1 I_2}{2\pi d}}

The force is attractive when the currents are in the same direction and repulsive when they are in opposite directions.

Definition of the ampere: Put I1=I2=1 AI_1 = I_2 = 1\,A and d=1 md = 1\,m. With μ0=4π×10−7 T m A−1\mu_0 = 4\pi\times10^{-7}\,T\,m\,A^{-1}: …

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