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Electromagne tic Induction Physics Mrs. Coyle
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Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

Apr 01, 2015

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Page 1: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

Electromagnetic

Induction

Physics

Mrs. Coyle

Page 2: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

Part I

• Faraday’s Law of Induction

Page 3: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

The Flying Ring

• http://teachertube.com/viewVideo.php?video_id=125587

Page 4: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

How can current be induced in a wire?

• Michael Faraday

• English professor

• 1791- 1867

• When the magnetic field that is “felt” by the wire is changed, a current is induced in the wire.

http://itp.nyu.edu/~ndl5/electricity/images/faraday.gif

Page 5: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

Note

• When a wire is moved in a constant magnetic field, the wire “feels” a changed magnetic field and current is induced.

Page 6: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

Electromagnetic Induction in a Generator

• http://www.teachersdomain.org/asset/ate10_int_generating/

Page 7: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

Faraday's Law of Induction

V= - / t

When the magnetic flux, is changed, a current with a voltage V, is induced in a wire loop.

Page 8: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

Magnetic Flux,

• The number of magnetic (flux) field lines which pass through a given cross-

sectional area A.

Page 9: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

Which wire loop has the largest magnetic flux?

Page 10: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

Which wire , 1,2 or 3 has the largest magnetic flux?

Page 11: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

Note

• Voltage is also called electromotive force (emf), E.

Page 12: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

How can current be induced in a loop that is in a magnetic field?

• By changing the magnetic flux over time.

Page 13: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

The magnetic flux can be changed by:

1. Changing the orientation of the wire loop in which the current is to be induced (movement).

2. Changing the strength of the magnetic field (change current of wire that causes the field).

3. Changing the area of the coil. 

Page 14: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

1. Movement of the wire (Motional EMF)

V = - B Lv sinL: length of the wire

angle between v and B

L

Page 15: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

2.Electromagnetic Induction

by changing the current causing the B-field (thus changing the B-field).

• http://higheredbcs.wiley.com/legacy/college/halliday/0471320005/simulations6e/index.htm?newwindow=true

Page 16: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

Question

• In the “flying ring” demo, how was the magnetic field “felt” by the copper ring changed?

• Answer: AC current

Page 17: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

3.When B is constant and A (area) is

changing.

Page 18: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

http://www.walter-fendt.de/ph14e/generator_e.htm

Generator

Page 19: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

Generators at Hoover Dam

http://nrgfuture.org/Hoover_Dam_generators.jpg

Page 20: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

3 minute video on Hoover Dam

• http://www.teachersdomain.org/resource/phy03.sci.phys.energy.hooverelec/

Page 21: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

Part II

• Lenz’s Law

Page 22: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

What is the direction of the induced current?

• Lenz’s Law: The induced current has a magnetic field that opposes the original change in flux.

• Indicated by minus (–) sign in Faraday’s equation.

Page 23: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

In which direction is the current induced in the loop?

Answer: Clockwise, because as the bar moves to the right, more field lines are in the loop. The current should act in the (opposite) direction to weaken the magnetic flux (field).

Page 24: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

Example: Change in Area

• The new smaller area contains less field lines (in the area), so the current will act in direction to strengthen the magnetic field, so the current will be induced clockwise.

What is the direction of the induced current?

Before After

Page 25: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

Applet –Change in Area

• http://dev.physicslab.org/asp/applets/javaphysmath/java/indcur/default.asp

Page 26: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

Question During which intervals will voltage be

induced and how is the current direction in the intervals related?

Page 27: Electromagnetic Induction Physics Mrs. Coyle. Part I Faraday’s Law of Induction.

http://www.walter-fendt.de/ph14e/generator_e.htm

Generator