Magnetic Induction. Key Points about Induction If the current in the primary circuit is constant,...

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Magnetic Induction

Transcript of Magnetic Induction. Key Points about Induction If the current in the primary circuit is constant,...

Page 1: Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

Magnetic Induction

Page 2: Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

Key Points about Induction

If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

When the magnetic field in the secondary circuit increases the current flows in one direction, and when the magnetic field decreases the current flows in the opposite direction.

The magnitude of the induced current and emf are proportional to the rate of change of the magnetic field.

Page 3: Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

Induced Current Produced by a Moving Magnet

Page 4: Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

The Magnetic Flux Through a Loop

Page 5: Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

Magnetic Flux

Page 6: Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

Find the flux through each side of the box.

Page 7: Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

Which flux(es) change(s) with time?

Page 8: Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

When will the emf and the magnetic flux be the greatest?

Page 9: Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

A Dynamic Microphone

Page 10: Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

The Pickup on an Electric Guitar

Page 11: Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

Magnetic Tape Recording

Page 12: Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

Induction Loop for the Hearing Impaired

Page 13: Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

Applying Lenz’s Law to a Magnet Moving Toward and Away From a Current Loop

The polarity of the induced emf in a loop is such that it produces a current whose magnetic field opposes the change in magnetic flux through the loop. That is, the induced current is in a direction such that the induced magnetic field attempts to maintain the original flux through the loop.

Page 14: Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

How do the accelerations compare?

Page 15: Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

Lenz’s Law Applied to a Decreasing Magnetic Field

Page 16: Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

Motional emf

Page 17: Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

Which plate is positively charge if the field increases?

Page 18: Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

What are the induced currents if I increases?

Page 19: Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

Eddy Currents

Page 20: Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

Quantitative Information from Lenz and Faraday

Page 21: Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

Find |B|, |F|, W, E, i, and |v|.

Page 22: Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

What are the induced current and the speed of the rod?

Page 23: Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

An Electric Generator

Page 24: Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

A Simple Electric Motor

Page 25: Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.

Induced emf of a Rotating Coil