Handout
Florida State University

Florida State University: Magnet Lab: Faraday Cage

For Students 9th - 10th
A faraday cage is an important tool for some scientists at the MagLab. But they don't work with it: they work inside it.
Unit Plan
Florida State University

Florida State University: Magnet Lab: Dilution Refrigerators

For Students 9th - 10th
Dilution fridges owe their cooling power to the incredible element helium. This animation illustrates how dil fridges exploit the element's properties to make things very, very cold.
Unit Plan
Florida State University

Florida State University: Magnet Lab: Atmospheric Pressure Photoionization (Appi)

For Students 9th - 10th
In the APPI technique, UV light photons are used to ionize sample molecules.
Unit Plan
Florida State University

Florida State University: Magnet Lab: What Is a Dewar?

For Students 9th - 10th
What are those big, silver containers that scientists push down the Magnet lab hallways? Find out what these devices are in this short article.
Article
Florida State University

Florida State University: Magnet Lab: What Is a Bus Room?

For Students 9th - 10th
The MagLab's bus tunnel has an aluminum track, but it doesn't carry passengers: it carries electricity, up to 56 megawatts of it.
Unit Plan
National High Magnetic Field Laboratory

Magnet Academy: Foucault's Disk

For Students 9th - 10th
Leon Foucault, a French physicist much better known for his pendulum demonstrating the rotation of the Earth, also created in 1855 a device that illustrated how eddy currents work. (Java tutorial)
Unit Plan
National High Magnetic Field Laboratory

Magnet Academy: Fourier Transform Ion Cyclotron Resonance (Ft Icr)

For Students 9th - 10th
FT-ICR is a powerful type of mass spectrometry, co-invented by the Magnet Lab's Alan Marshall, particularly suited to identifying heavy molecules. (Java tutorial)
Unit Plan
National High Magnetic Field Laboratory

Magnet Academy: Galvanometer

For Students 9th - 10th
This tutorial illustrates how a galvanometer, an instrument that detects and measures small amounts of current in an electrical circuit, works. (Java tutorial)
Unit Plan
National High Magnetic Field Laboratory

Magnet Academy: Guitar Pickup

For Students 9th - 10th
Keith Richards and Eric Clapton owe their fame and fortune (in part) to electromagnetic induction. (Java tutorial)
Unit Plan
National High Magnetic Field Laboratory

Magnet Academy: Audion

For Students 9th - 10th
In 1906, American physicist Lee De Forest invented the Audion (or triode), building on John Fleming's discovery of the diode just a few years before.
Unit Plan
National High Magnetic Field Laboratory

Magnet Academy: Arc Lamp

For Students 9th - 10th
Invented decades before it could be used, the first type of electric light was so brilliant it was used for lighthouses and street lamps.
Unit Plan
National High Magnetic Field Laboratory

Magnet Academy: Alternating Current

For Students 9th - 10th
Alternating current behaves differently, depending on what components are in a circuit.
Unit Plan
National High Magnetic Field Laboratory

Magnet Academy: Emf in Inductors

For Students 9th - 10th
Electromotive Force (EMF) and its sidekick, back EMF, are interesting electromagnetic phenomena that aren't really forces at all. (Java tutorial)
Unit Plan
National High Magnetic Field Laboratory

Magnet Academy: Daniell Cell

For Students 9th - 10th
English chemist John Frederick Daniell came up with a twist on the simple voltaic cell that resulted in a longer-lasting source of power.
Unit Plan
National High Magnetic Field Laboratory

Magnet Academy: Current Flow

For Students 9th - 10th
This tutorial illustrates how the flow of water through a system of pipes can be used to understand the flow of current through an electric circuit.
Unit Plan
National High Magnetic Field Laboratory

Magnet Academy: Electromagnetic Deflection in a Cathode Ray Tube, Ii

For Students 9th - 10th
Many people interact with cathode ray tubes for part, if not most, of the day without having a clue how they work. Here's the inside scoop. (Java tutorial)
Unit Plan
National High Magnetic Field Laboratory

Magnet Academy: Electromagnetic Deflection in a Cathode Ray Tube, I

For Students 9th - 10th
Discovering how cathode rays behave in a magnetic field was a big step forward for scientists trying to understand the mysterious phenomenon. (Java tutorial)
Unit Plan
National High Magnetic Field Laboratory

Magnet Academy: Capacitor

For Students 9th - 10th
A capacitor is similar to a battery in that both store electrical energy. But a capacitor can't actually produce new electrons; it only stores them.
Unit Plan
National High Magnetic Field Laboratory

Magnet Academy: Bullet Speed

For Students 9th - 10th
This tutorial takes a shot at explaining how circuits can be used to measure things beyond the capacity of human senses.
Unit Plan
National High Magnetic Field Laboratory

Magnet Academy: Barlow's Wheel

For Students 9th - 10th
English mathematician Peter Barlow devised an instrument in 1822 that built on advances from earlier in the century (including the invention the battery) to create a very early kind of electric motor.
Unit Plan
National High Magnetic Field Laboratory

Magnet Academy: Dc Motor

For Students 9th - 10th
Electric motors turn electricity into motion by exploiting electromagnetic induction.
Unit Plan
National High Magnetic Field Laboratory

Magnet Academy: Faraday's Ice Pail

For Students 9th - 10th
Out of a humble ice pail the great experimentalist Michael Faraday created a device to demonstrate key principles of attraction, repulsion and electrostatic induction. (Java tutorial)
Unit Plan
National High Magnetic Field Laboratory

Magnet Academy: Faraday Motor

For Students 9th - 10th
Just a year after electromagnetism was discovered, the great scientific thinker Michael Faraday figured out how to turn it into motion. (Java tutorial)
Unit Plan
National High Magnetic Field Laboratory

Magnet Academy: Electrostatic Generator

For Students 9th - 10th
Though simple by today's standards, the early electrostatic generators were a great milestone in humankind's understanding of electricity, allowing scientists to produce electricity so they could study it. (Java tutorial)