Q.A pair of adjacent coils has a mutual inductance of . If the current in one coil changes from to in , what is the change of flux linkage with the other coil?
You're viewing a preview — the full solution, concept, methods & PYQ mapping are locked.
Start your 14-day free trial to unlock the full solution →The change in flux linkage with the second coil is found directly from the definition of mutual inductance: . Here, .
Mutual inductance is a measure of how effectively a changing current in one coil induces a magnetic flux through another coil. The key idea is that the flux linkage in the second coil is proportional to the current in the first coil, with the constant of proportionality being the mutual inductance .
The definition is:
If a current flows in coil 1, the flux linkage (total magnetic flux linking all turns) in coil 2 is
where is in weber-turns (Wb-turns) and is in henries (H). This is a direct, linear relationship — no time derivative involved yet.
When the current changes, the flux linkage changes by the same proportion. So the change in flux linkage is simply times the change in current :
This is the cleanest way to get the answer. The time interval (0.5 s) is irrelevant for the change in flux linkage — it only matters if you were asked for the induced emf (which would be ).
A common mistake is to bring the time into the flux calculation. The flux linkage change depends only on the net current change, not on how fast it happens. The time is a red herring here.
Now let’s plug in the numbers.
- Identify the given values Mutual inductance: …
Unlock everything free for 14 days
- Full step-by-step solutions
- Concept-first explanations
- Methods, shortcuts & mistakes
- PYQ mapping + timed mock tests
Full access for 14 days. No credit card required.