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Electromagnets April

Electromagnets

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Electromagnets. April. Electricity vs. Magnetism. Magnetic field lines. N S. Draw magnetic field lines around a magnet. - PowerPoint PPT Presentation

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Page 1: Electromagnets

Electromagnets

April

Page 2: Electromagnets

Electricity vs. MagnetismElectricity Magnetism+ and - North and SouthElectric field, E caused by electric charges, stationary or in motion

Magnetic field, B caused by electric charges in motion

Like charges repel; unlike charges attract

Like poles repel; unlike poles attract

Electric charges can be isolated

Magnetic poles cannot be isolated

Page 3: Electromagnets

Magnetic field lines

N S

Page 4: Electromagnets

Draw magnetic field lines around a magnet.

N S

Outside the magnet: mfl move from the north pole to the south pole.Inside the magnet: mfl move from the south pole to the north pole.

Page 5: Electromagnets

Electromagnets

• Electric current produces magnetic field. An electromagnet is a current-carrying coil of wire with many loops

Page 6: Electromagnets

The Right-Hand Rule

If the wire is grasped in the right hand with the thumb in the direction of the current, the fingers will curl in the direction of magnetic field.

Page 7: Electromagnets

electromagnets

A current-carrying coil of wire with many

loops is an electromagnet.

I

Page 8: Electromagnets

Magnetic Field due to the electric current

Page 9: Electromagnets

Magnetic Field due to the electric current

Page 10: Electromagnets

Magnetic Field inside a Solenoid

A coil of several closely spaced loops is called a solenoid.

Page 11: Electromagnets

Demonstration

• Electromagnetism• Materials list: D-cell battery, insulated wire, nail,

compass• Use the compass to determine whether the nail

is magnetized.• Next, flip the battery so that the direction of the

current is reversed.• Again bring the compass toward the same part of

the nail.

Page 12: Electromagnets

symbols of magnetic field

Page 13: Electromagnets

electromagnets

A current-carrying coil of wire with many

loops is an electromagnet.

Page 14: Electromagnets

Right-hand rule practice

Page 15: Electromagnets
Page 16: Electromagnets
Page 17: Electromagnets
Page 18: Electromagnets

Electric Field

Page 19: Electromagnets

Magnetic force (Fmagnetic)

• A charge moving through a magnetic field experiences a force.

• Fmagnetic = qvB

q is the magnitude of charge. (C) v is the speed of charge. (m/s) B is the strength of magnetic field. Tesla (T)

1 T is the magnetic field strength in which a charge of 1 C experiences 1 N of force when it moves at the speed of 1 m/s.

Page 20: Electromagnets

direction of magnetic force

• To determine the direction of the force, use the right-hand rule.

• Place your fingers in the direction of B with your thumb pointing in the direction of v.

• The magnetic force on a positive charge is directed out of the palm of your hand.

Page 21: Electromagnets

Right-hand rule practice

+

+

-

+

Page 22: Electromagnets

A charge moving through a magnetic field follows a circular path.

Page 23: Electromagnets

practice

• An electron moving north at 4.5 x 104 m/s enters a 1.0 mT magnetic filed pointed upward.

• a. what is the magnitude and direction of the force exerted on the electron?

• b. what would the force be if the particle were a proton?

• c. what would the force be if the particle were a neutron?

Page 24: Electromagnets

answers

• a. 7.2 x 10-18 N west• b. 7.2 x 10-18 N east• c. 0.0 N

Page 25: Electromagnets

Practice

• A proton moves perpendicularly to a magnetic field that has a magnitude of 4.20 x 10-2 T. What is the speed of the particle if the magnitude of the magnetic force on it is 2.40 x 10-14 N?

• 3.57 x 106 m/s

Page 26: Electromagnets

Force on a current-carrying conductor perpendicular to a magnetic field is proportional to magnetic field, current and length of conductor.F magnetic = BIl

B is the strength of magnetic field. Tesla (T)I is the current. (A)l is the length of the wire (m)

Page 27: Electromagnets
Page 28: Electromagnets

Practice

• A 4.5 m wire carries a current of 12.5 A from north to south. If the magnetic force on the wire due to a uniform magnetic field is 1.1 x 103 N downward, what is the magnitude and direction of the magnetic field?

• 2.0 x 101 T, to the west

Page 29: Electromagnets

Homework

• Pages 782 and 783• Questions 26, 30, 33, 34 and 41.