Home Physics Electromagnetic Induction Faraday's and Lenz's Law In the figure shown, the magnet is pushed to…
Physics Electromagnetic Induction Faraday's and Lenz's Law MCQ (Single Correct)

In the figure shown, the magnet is pushed towards the fixed ring along the axis of the ring and it passes through the ring.

A
when magnet goes towards the ring the face B becomes south pole and the face A becomes north pole
B
when magnet goes away from the ring the face B becomes north pole and the face becomes south pole
C
when magnet goes away from the ring the face A becomes north pole and the face B becomes south pole
D
the face A will always be a north pole.

Share this question

For Instagram sharing, use “Apps” on mobile or copy the link.

Text Solution

Verified by Experts
The correct answer is:
C

When the magnet goes away from the ring the flux in the ring decreases hence the induced current will be such that it opposes the decreasing flux in it hence ring will behave like a magnet having face A as north pole and face B as south pole.

Prepare Smarter with CGP Edu

Get practice questions, solutions, and test series in one place.

Write a Review

Share your experience with this question and solution.

Commentary

Send your comment, doubt, correction, or feedback to admin.

Student Reviews

What students say about this solution

No reviews yet. Be the first to write a review.

Similar Questions

Explore conceptually related problems

CG
CGP Question Assistant Question Bank + AI Help
Hi! Type your question or upload one screenshot. First I will search related questions from CGP Edu Question Bank. If none match, type YES and I will solve it with AI.
Upload only one screenshot at a time. Flow: Question Bank first → If not matched, type YES for AI solution.