Question:

A coil in the shape of an equilateral triangle of side l is suspended between the pole pieces of a permanent magnet such that $\vec{B}$ is in plane of the coil. If due to a current i in the triangle a torque $ \tau $ acts on it, the side l of the triangle is

Updated On: May 3, 2024
  • $\frac{2}{\sqrt 3} \bigg(\frac{\tau}{Bi} \bigg)$
  • $2 \bigg(\frac{\tau}{\sqrt 3 Bi} \bigg)^{1/2}$
  • $\frac{2}{\sqrt 3} \bigg(\frac{\tau}{Bi} \bigg)^{1/2}$
  • $\frac{2}{\sqrt 3} \frac{\tau}{Bi}$
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The Correct Option is B

Solution and Explanation

The current flowing clockwise in the equilateral triangle has a magnetic field in the direction $\widehat{k}$
$\tau = BiNAsin \theta = B\, iAsin90^\circ$
$\tau = $$Bi\times\frac{\sqrt{3}}{4}l^{2}$ (area of equilateral triangle
$=\frac{\sqrt 3}{4} l^2)$
(as it appears that N = 1)
$\bigg(\frac{4\tau}{\sqrt 3 Bi} \bigg) = l^2 \Rightarrow l = 2\bigg(\frac{\tau}{ Bi \sqrt 3} \bigg)^{1/2}$.
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Concepts Used:

Magnetism & Matter

Magnets are used in many devices like electric bells, telephones, radio, loudspeakers, motors, fans, screwdrivers, lifting heavy iron loads, super-fast trains, especially in foreign countries, refrigerators, etc.

Magnetite is the world’s first magnet. This is also called a natural magnet.  Though magnets occur naturally, we can also impart magnetic properties to a substance. It would be an artificial magnet in that case.

Read More: Magnetism and Matter

Some of the properties of the magnetic field lines are:

  • The lines and continuous and outside the magnet, the field lines originate from the North pole and terminate at the South pole
  • They form closed loops traversing inside the magnet. 
  • But here the lines seem to originate from the South pole and terminate at the North pole to form closed loops.
  • More number of close lines indicate a stronger magnetic field
  • The lines do not intersect each other
  • The tangent drawn at the field line gives the direction of the field at that point.