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Zorluk: ZorElectromagnetic Induction

Two concentric circular conducting loops, PP and QQ, lie flat in the same horizontal plane, with loop QQ situated inside loop PP. Loop PP is connected to a DC power source through a variable resistor and initially carries a steady clockwise current. If the resistance of the variable resistor is suddenly decreased, which of the following correctly describes the direction of the induced current in loop QQ and the nature of the magnetic force exerted on loop QQ?

  1. The induced current in QQ is counter-clockwise, and the magnetic force on QQ is repulsive.Cevap
  2. B
    The induced current in QQ is clockwise, and the magnetic force on QQ is attractive.
  3. C
    The induced current in QQ is counter-clockwise, and the magnetic force on QQ is attractive.
  4. D
    The induced current in QQ is clockwise, and the magnetic force on QQ is repulsive.

Cevap

The induced current in loop QQ flows in a counter-clockwise direction, and the magnetic force between loop PP and loop QQ is repulsive.
Decreasing the variable resistance increases the clockwise current in loop PP, which increases the downward magnetic flux through loop QQ. By Lenz's law, loop QQ generates an opposing upward magnetic flux, which corresponds to a counter-clockwise induced current. Because the two loops carry currents flowing in opposite directions, they exert a repulsive magnetic force on each other.

Adım Adım Çözüm

1
Determine the initial magnetic field direction created by loop PP
Using the right-hand grip rule, a clockwise current in outer loop PP produces a magnetic field directed perpendicularly downward (into the plane of the page) inside the loop.
Current in a circular loop generates an axial magnetic field whose direction is given by the right-hand rule.
2
Analyze the change in magnetic flux through inner loop QQ
Decreasing the resistance increases the current in loop PP, thereby increasing the downward magnetic flux passing through loop QQ.
Ohm's law (I=V/RI = V/R) indicates that reducing resistance increases current, which proportionally strengthens the magnetic field (BIB \propto I).
3
Apply Faraday's and Lenz's laws to find the induced current direction in QQ
To oppose the increasing downward flux, the induced current in loop QQ must produce a magnetic field directed upward (out of the page). By the right-hand grip rule, an upward field requires a counter-clockwise current in loop QQ.
Lenz's law states that an induced current always flows in such a direction that its magnetic effect opposes the change producing it.
4
Determine the nature of the magnetic force between the two loops
Loop PP carries a clockwise current while loop QQ carries a counter-clockwise current. Concentric circular conductors carrying currents in opposite directions repel each other.
Opposing electric currents produce magnetic fields that result in mutual magnetic repulsion.

Anahtar Kavram

Lenz's Law and Electromagnetic Induction in Coaxial Loops
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