Three straight parallel current carrying conductors are shown in the figure. The force experienced by the middle conductor of length $25\,cm$ is
  • A$3\times10^{-4}\, N$ toward right
  • B$6\times10^{-4}\, N$ toward right
  • C$9\times10^{-4}\, N$ toward right
  • D
    Zero
JEE MAIN 2014, Diffcult
art

Download our app
and get started for free

Experience the future of education. Simply download our apps or reach out to us for more information. Let's shape the future of learning together!No signup needed.*

Similar Questions

  • 1
    Two long wires are hanging freely. They are joined first in parallel and then in series and then are connected with a battery. In both cases, which type of force acts between the two wires
    View Solution
  • 2
    A circular loop of area $0.01\,{m^2}$ carrying a current of $10\, A$, is held perpendicular to a magnetic field of intensity $0.1\,T$. The torque acting on the loop is......$N-m$
    View Solution
  • 3
    A loop of irregular shape carrying current is located in an external magnetic field. If  wire is flexible it will take the shape of
    View Solution
  • 4
    Assertion : Cyclotron does not accelerate electron.

    Reason : Mass of the electrons is very small

    View Solution
  • 5
    Magnetic field due to semi infinite length wire at point $P$ 
    View Solution
  • 6
    A special metal $S$ conducts electricity without any resistance. A closed wire loop, made of $S$, does not allow any change in flux through itself by inducing a suitable current to generate a compensating flux. The induced current in the loop cannot decay due to its zero resistance. This current gives rise to a magnetic moment which in turn repels the source of magnetic field or flux. Consider such a loop, of radius $a$, with its center at the origin. A magnetic dipole of moment $m$ is brought along the axis of this loop from infinity to a point at distance $r \gg a)$ from the center of the loop with its north pole always facing the loop, as shown in the figure below.

    The magnitude of magnetic field of a dipole $m$, at a point on its axis at distance $r$, is $\frac{\mu_0}{2 \pi} \frac{m}{r^3}$, where $\mu_0$ is the permeability of free space. The magnitude of the force between two magnetic dipoles with moments, $m_1$ and $m_2$, separated by a distance $r$ on the common axis, with their north poles facing each other, is $\frac{k m_1 m_2}{r^4}$, where $k$ is a constant of appropriate dimensions. The direction of this force is along the line joining the two dipoles.

    ($1$) When the dipole $m$ is placed at a distance $r$ from the center of the loop (as shown in the figure), the current induced in the loop will be proportional to

    $(A)$ $\frac{m}{r^3}$ $(B)$ $\frac{m^2}{r^2}$ $(C)$ $\frac{m}{r^2}$ $(D)$ $\frac{m^2}{r}$

    ($2$) The work done in bringing the dipole from infinity to a distance $r$ from the center of the loop by the given process is proportional to

    $(A)$ $\frac{m}{r^5}$ $(B)$ $\frac{m^2}{r^5}$ $(C)$ $\frac{m^2}{r^6}$ $(D)$ $\frac{m^2}{r^7}$

    Give the answer or qution ($1$) and ($2$)

    View Solution
  • 7
    A long solenoid is fabricated to closely winding wire of radius $0.5\,mm$ over a cylindrical frame so that the successive turns nearly touch each other, the magnetic field at the centre of solenoid if it carries a current of $5\,A$
    View Solution
  • 8
    The correct curve between the magnetic induction $(b)$ along the axis of a long solenoid due to current flow $ i$ in it and distance $x$ from one end is
    View Solution
  • 9
    The sensitivity of a galvanometer of resistance $406\, ohm$ is decreased by $30\, times$. The shunt used is .................. $\Omega$
    View Solution
  • 10
    A circular conducting loop of radius $R$ carries a current $I.$ Another straight infinite conductor carrying current $I$ passes through the diameter of this loop as shown in the figure. The magnitude of force exerted by the straight conductor on the loop is
    View Solution