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Q.Two parallel conductors, separated by a distance 'd', carry currents I1 and I2 respectively. Derive the expression for the mutual force between the two conductors. Using this, define the unit of electric current. OR State Faraday's law of electromagnetic induction, and write the expression for the induced EMF in a closed circuit.

Tripura TbseHigher Secondary (+2 Stage) Examination 2025Subjective· 3mImportance★★★★★
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Figure — The answered alternative derives the mutual force between two parallel current-carrying conductors and reasons
Figure — The answered alternative derives the mutual force between two parallel current-carrying conductors and reasons

Each current-carrying wire creates a magnetic field at the location of the other; that field exerts a force on the second wire's current -- combining these two steps gives the mutual-force formula, which in turn defines the ampere.

Derivation: Consider two long straight parallel conductors separated by distance d, carrying currents I1I_1 and I2I_2.

The magnetic field produced by conductor 1 at the location of conductor 2 (distance d away):

B1=μ0I12πdB_1=\frac{\mu_0I_1}{2\pi d}

This field exerts a force on conductor 2 (which carries current I2I_2). The force per unit length on conductor 2 is:

FL=I2B1=μ0I1I22πd\frac{F}{L}=I_2B_1=\frac{\mu_0I_1I_2}{2\pi d}

This force is attractive if the currents flow in the same direction, and repulsive if they flow in opposite directions.

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