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Magnetism Physics Ms. Allison

Magnetism Physics Ms. Allison. Agenda Engagement Lecture Demonstrations Independent class work Exploration Closing

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Page 1: Magnetism Physics Ms. Allison. Agenda Engagement Lecture Demonstrations Independent class work Exploration Closing

Magnetism

PhysicsMs. Allison

Page 2: Magnetism Physics Ms. Allison. Agenda Engagement Lecture Demonstrations Independent class work Exploration Closing

Agenda

• Engagement• Lecture• Demonstrations• Independent class work• Exploration• Closing

Page 3: Magnetism Physics Ms. Allison. Agenda Engagement Lecture Demonstrations Independent class work Exploration Closing

College Lecture

What can you record about magnetism?• Watch video• Record notes about important details• Magnetism Summary

Page 4: Magnetism Physics Ms. Allison. Agenda Engagement Lecture Demonstrations Independent class work Exploration Closing

What is Magnetism?

• Caused by moving electric charges • Charges interact with BOTH electric and

magnetic fields• 3 ways magnets can be created

Page 5: Magnetism Physics Ms. Allison. Agenda Engagement Lecture Demonstrations Independent class work Exploration Closing

What about Magnetic Domains?

• Microscopic clusters of aligned atoms• Align the atoms and make a new magnet

Page 6: Magnetism Physics Ms. Allison. Agenda Engagement Lecture Demonstrations Independent class work Exploration Closing

What are Magnetic poles

• One region on a magnet that produces magnetic forces

• North and south poles of every magnet• Opposite poles attract while like poles repel• Poles cannot be isolated

Page 7: Magnetism Physics Ms. Allison. Agenda Engagement Lecture Demonstrations Independent class work Exploration Closing

What are Magnetic fields?

• A force field around every magnet or current carrying wire

• Produced by motion of electric charges• Strongest near the magnet• Lines usually drawn from north to south

Page 8: Magnetism Physics Ms. Allison. Agenda Engagement Lecture Demonstrations Independent class work Exploration Closing

What is an electromagnet?

• A current carrying wire with many loops• Magnetic fields exert a force on moving

electrons in a loop• The magnetic field is strongest in the center of

the loop• Make with a wire, battery and nail

Page 9: Magnetism Physics Ms. Allison. Agenda Engagement Lecture Demonstrations Independent class work Exploration Closing

Solving for magnetic force and field

Magnetic field = force (charge)(speed)

B = F qv

Page 10: Magnetism Physics Ms. Allison. Agenda Engagement Lecture Demonstrations Independent class work Exploration Closing

Did you know the Earth is a magnet?

• Currents in molten part of Earth• Convection currents from heat of Earth’s core• Not stable

Page 11: Magnetism Physics Ms. Allison. Agenda Engagement Lecture Demonstrations Independent class work Exploration Closing

Magnets in today’s world

• Cell phones• Strips within cards• High speed trains

Page 12: Magnetism Physics Ms. Allison. Agenda Engagement Lecture Demonstrations Independent class work Exploration Closing

Closing

• How can one make a magnet?

• What happens to the electrons if a magnet exist or is made?

Page 13: Magnetism Physics Ms. Allison. Agenda Engagement Lecture Demonstrations Independent class work Exploration Closing

Homework

• Write 5 questions (with answers) about Magnetism