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Q.Two long straight thin conductors carrying currents I1 and I2 respectively along the same direction are placed parallel to each other at distance d in air. Find the force per unit length acting on any one of the conductors. Hence define one ampere.

Assam AhsecAHSEC Higher Secondary (HS) Final Examination 2019Subjective· 3mImportance★★★★★
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Each wire's magnetic field exerts a force on the other via F=BIlF=BIl; combining with B=μ0I/2πdB=\mu_0I/2\pi d gives F/l=μ0I1I2/2πdF/l=\mu_0I_1I_2/2\pi d, which also defines the ampere.

Consider two long straight parallel conductors carrying currents I1I_1 and I2I_2 in the same direction, separated by distance dd. The magnetic field produced by conductor 1 at the location of conductor 2 (distance dd away) is:

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

This field exerts a force on a length ll of conductor 2 (carrying current I2I_2), given by F=B1I2lF = B_1 I_2 l (since B1B_1 is perpendicular to conductor 2):

F=μ0I1I2l2πdF = \dfrac{\mu_0 I_1 I_2 l}{2\pi d}

So the force per unit length on either conductor (by Newton's third law, the force on conductor 1 due to conductor 2's field is equal and opposite) is:

Fl=μ0I1I22πd\dfrac{F}{l} = \dfrac{\mu_0 I_1 I_2}{2\pi d}

This force is attractive if the currents are in the same direction (as here), and repulsive if in opposite directions.

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