Home
Class 12
PHYSICS
Two long wires a and b, carrying equal c...

Two long wires a and b, carrying equal currents of 10*0A, are placed parallel to each other with a separation of 4*00 cm between them as shown in figure. Find the magnetic field B at each of the points P,Q and R.

Text Solution

Verified by Experts

Solution: The magnetic field at P due to the wire a has
magnitude
` B_1= (mu_0)i/2pi d = ((4 pi xx (10^-7) TmA^-1) xx 10A)/ 2 pi xx 2 xx (10^-2)m.`
` =1*00 xx (10^-4)T.`
Its direction will be perpendicular to the line shown and
will point downward in the figure.
The field at this point due to the other wire has magnitude
` B_2=(mu_0)i/2pi d =(4 pi xx (10^-7)(TmA^-1) xx 10A)/(2pi xx 6 xx (10^-2)m)`
` = 0*33 xx (10^-4) T`.
`Its direction will be the same as that of B_1. Thus, the`
resultant field will be `1*33 xx 10^-4` T also along the same `
direction.
Similarly, the resultant magnetic field at R will be
`(=1*33 xx 10^-4) T along the direction pointing upward in`
the figure.
The magnetic field at point Q due to the two wires will
have equal magnitudes but opposite directions and
hence the resultant field will be zero.
Doubtnut Promotions Banner Mobile Dark
|

Topper's Solved these Questions

  • MAGNETIC FIELD DUE TO CURRENT

    HC VERMA|Exercise questions for short answer|12 Videos
  • MAGNETIC FIELD DUE TO CURRENT

    HC VERMA|Exercise Objective 1|12 Videos
  • MAGNETIC FIELD DUE TO CURRENT

    HC VERMA|Exercise exercise|61 Videos
  • MAGNETIC FIELD

    HC VERMA|Exercise Exercises|60 Videos
  • MAGNETIC PROPERTIES OF MATTER

    HC VERMA|Exercise Exercise|9 Videos

Similar Questions

Explore conceptually related problems

Two long, straight wires, each carrying an electric current of 5.0 A, are kept parallel to each other at a separation of 2.5 cm. Find the magnitude of the magnetic force experienced by 10 cm of a wire.

Two infinitely long wires carry current as shown in Figure. Find the magnetic field inten sity at the points P, P and P*

Two large conducting plates are placed parallel to each other with a separation of 2.00 cm betweeen them. An electron starting from rest near one of the plates reaches the other plate in 2.00 microseconds. Find the surface charge density on the inner surfaces.

The two long, straight wires carrying electric currents of 10A each in opposite directions. The separation between the wires is 5.0 cm. Find the magnetic field at a point P midway between the wires.

Three coplanar parallel wires, each carrying a current of 10 A along the same direction, are placed with a separation 5.0 cm between the consecutive ones. Find the magnitude of the magnetic force per unit length acting on the wires.

Two large conducting plates are placed parallel to each other and they carry equal and opposite charges with surface density sigma as shown in figure (30-E6). Find the electric field (a) at the left of the plates, (b) in between the plates and © at the right of the plates.

Two long wires, carrying currents i_1 and i_2, are placed perpendicular to each other in such a way that they just avoid a contact. Find the magnetic force on a small length dl of the second wire situated at a distance l from the first wire. (figure)

Four long, straight wires, each carrying a current of 5.0 A, are placed in a plane as shown in figure . The points of intersection form a square of side 5.0 cm. (a) Find the magnetic field at the centre P of the square. (b) Q_1, Q_2, Q_3 and Q_4 are points situated on the diagonals of the square and at a distance from P that is equal to the length of the diagonal of the square. Find the magnetic fields at these points.

Two parallel wires carry equal currents of 10A along the same direction and are separated by a distance of 2.0 cm. Find the magnetic field at a point which is 2.0 cm away from each of these wires.

A current of 2*00 A exists in a square loop of edge 10*0 cm . Find the magnetic field B at the centre of the square loop.