Question:

A square loop, carrying a steady current $I$, is placed in horizontal plane near a long straight conductor carrying a steady current $I_{1}$ at a distance $d$ from the conductor as shown in figure. The loop will experience

Updated On: Apr 15, 2024
  • a net repulsive force away from the conductor
  • a net torque acting upward perpencicular to the horizontal plane
  • a net torque acting downward normal to the horizontal plane
  • a net attractive force towards the conductor
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The Correct Option is D

Solution and Explanation

$F_{2} = - F_{4}$
$ F_{1} = \frac{\mu_{0}\,I_{1} \,Il}{2 \pi dl}$
$F_{2} = \frac{\mu_{0} \,I_{1}\,Il}{2\pi\left(d + l\right)}$
$ F_{1} > F_{3}$
$ F_{\text{net}} = F_{1} - F_{3} $
So, wire attract loop .
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Concepts Used:

Current Electricity

Current electricity is defined as the flow of electrons from one section of the circuit to another.

Types of Current Electricity

There are two types of current electricity as follows:

Direct Current

The current electricity whose direction remains the same is known as direct current. Direct current is defined by the constant flow of electrons from a region of high electron density to a region of low electron density. DC is used in many household appliances and applications that involve a battery.

Alternating Current

The current electricity that is bidirectional and keeps changing the direction of the charge flow is known as alternating current. The bi-directionality is caused by a sinusoidally varying current and voltage that reverses directions, creating a periodic back-and-forth motion for the current. The electrical outlets at our homes and industries are supplied with alternating current.