Home
Class 12
PHYSICS
A uniform magnetic field exists in a squ...

A uniform magnetic field exists in a square of side 2a (as shown in Fig). A square loop of side a centers the field along a diagonal and leave it at a constant speed. Draw the curve between induced emf e and distance along the diagonal, say `x_(0)`

A

B

C

D

Text Solution

Verified by Experts

The correct Answer is:
D

The graph is to be drawn qualitatively

As shown, for `0 le x le a`
`phi=Bx^(2)`
`e=(-d phi)/(dt) =-2Bx*(dx)/(dt)=-2 Bxv`
At `x=0, e=0`
at `x=a//2, e=-Bav`
as, `x rarr a "but " != a, e~~-2 Bav`
As, `x=a, e=0` as `phi =` constant
Distance along diagonal `(x_0)=xsqrt(2)`, thus, `x_(0)=f(x)`
When the loop reaches completely inside the field, it starts coming out of the field after some moment. When the loop is coming out, `(x_1)` should be selected carefully, for which
`phi=(B)(a-x_(1))^(2)`
`e=(-dphi)/(dt)=-2B(a-x_(1))*(v)`
`=2B(a-x_(1))v`
`x_(1)=a, e=0`
Thus, before the loop enters the field completely, `e= -2 Bav`. When the loop is completely inside the field `e=0 (phi=`constant). as the loop starts coming out of the field `(e=2Bav)`. option (d) is correct.
Promotional Banner

Topper's Solved these Questions

  • MISCELLANEOUS VOLUME 5

    CENGAGE PHYSICS|Exercise Multiple Correct|34 Videos
  • MISCELLANEOUS VOLUME 5

    CENGAGE PHYSICS|Exercise Linked Comprehension|84 Videos
  • MISCELLANEOUS VOLUME 3

    CENGAGE PHYSICS|Exercise True and False|3 Videos
  • Moving charges and magnetism

    CENGAGE PHYSICS|Exercise Question Bank|20 Videos

Similar Questions

Explore conceptually related problems

Magnetic field induction at the centre O of a square loop of side a carrying current I as shown in figure.

A right angled triangular loop as shown below enters uniform magnetic field (at right angle to the boundary of the field) directed into the paper. Draw the graph between induced emf e and the distance along the perpendicular to the boundary of the field, (say x) along which loop moves.

The magnetic field at the point of intersection of diagonals of a square wire loop of side L, carrying a current I is

A square loop of side 5 cm enters a magnetic field with 1cms^(-1) . The front edge enters the magnetic emf?

The magnetic field due to a current carrying square loop of side a at a point located symmetrically at a distance of a/2 from its centre (as shown is)

A square loop of side b is rotated in a constant magnetic field B at angular frequency omega as shown in the figure. What is the emf induced in it?

The magnetic field in a region is given by vecB =B_(0)((x)/(a))^hatk . A square loop of side d is placed with its edges along the x and y axes. The loop is moved with a constant velocity vecv=v_(0)hati The emf induced in the loop is :