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Q.Obtain an expression for force per unit length between two parallel current carrying conductors. Define 1 ampere. OR

(a) What is Lorentz force ? Explain.
(b) What is the importance of radial magnetic field in moving coil galvanometer ? Show diagrammatically.
(c) Why phosphor bronze wire is used in moving coil galvanometer ?
Haryana BsehBSEH Intermediate Board 2025Subjective· 5mImportance★★★★★
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Each current-carrying wire creates a magnetic field at the other's location, and the resulting force per unit length works out to μ₀I₁I₂/(2πd) — this expression is used to define the SI ampere itself.

Setup: Two long, straight, parallel conductors carry currents I1I_1 and I2I_2, separated by a perpendicular distance dd.

Step 1 — Field due to wire 1 at the location of wire 2:

By Ampere's law, the magnetic field at distance d from an infinite straight wire carrying current I1I_1 is

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

This field is directed perpendicular to wire 2 (circling wire 1), so it is uniform along wire 2's length and perpendicular to the current I2I_2 flowing in it.

Step 2 — Force on wire 2 due to this field:

The force on a length ll of wire 2 (carrying current I2I_2, perpendicular to B1B_1) is

F=B1I2l=μ0I1I2l2πdF = B_1 I_2 l = \frac{\mu_0 I_1 I_2 l}{2\pi d}

Force per unit length:

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

By Newton's third law (and the symmetric form of the expression), wire 1 experiences an equal and opposite force per unit length from wire 2. The force is attractive if the currents flow in the same direction, and repulsive if they flow in opposite directions.

Definition of 1 ampere: …

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