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Curated OER
3-D Magnetic Field
In this magnetism worksheet, students build a 3 dimensional magnetic field by using a juice bottle, a test tube, iron fillings and a magnet. Students write a descriptive story about what they observe once their bottle is complete and...
Curated OER
Electricity and Magnetism
In this electricity worksheet, students read and reflect on what electromagnets are and how they attract objects. Students put 4 events in order that would make an electromagnet start attracting objects and identify 3 ways to increase...
Curated OER
Magnetism
In this magnetism instructional activity, students answer ten questions about magnets, their magnetic poles, the magnetic lines of flux and how magnets work.
Curated OER
Intermediate Electromagnetism and Electromagnetic Induction
In this electrical circuit activity, students answer a series of 24 open-ended questions about electromagnetism and electromagnetic induction. This activity is printable and the answers are revealed online.
Curated OER
Electric Power Transmission and Distribution
Students explain how power is transmitted over long distances. In this physics lesson, students simulate controlling power flow in parallel transmission lines. They discuss several applications of wireless power transmission.
Curated OER
Magnetic Levitation
Young scholars conduct a series of experiments on magnetic levitation. In this physics lesson, students discover how Maglev trains operate. They explain how magnetism make even simple objects levitate.
Physics Classroom
Charge Interactions
Has your class been repelled by your previous magnetism lesson plan? Try a fun interactive instead! The activity, part of the Static Electricity series, challenges scholars to infer the charges of a group of magnets based upon their...
Science Matters
Electricity and Magnetism Formative Assessment #2
Leave it to science to get scholars out of a jam. Young scientists use what they've learned about electricity and magnetism in the previous eight lessons in the series to build tools that will allow them to find their way out of the...
Bonneville
Three Ways to Generate Electricity
Get your hands on electricity. Pupils investigate magnetic fields and make the connection to generators in the fourth lesson in a series of six lessons on wind versus solar energy. Learners use a small electric motor as a generator to...
Curated OER
Typical Numeric Questions for Physics I - Electric Circuits
A collection of 15 practice problems, most of them involving circuit schematics, is provided for your physics class on this handout. Learners are to compute the net charge, resistance, energy, or power dissipated for different...
Physics Classroom
Polarization
Are your young physicists static-savvy? Test their skills using an engaging interactive from the Static Electricity series! Learners evaluate scenarios to determine how charges move between conductors and insulators, then identify...
Curated OER
Physical Setting: Physics Exam 2004
Twelve pages of mostly multiple-choice questions comprise this comprehensive New York Regents physics exam. It covers an entire year's worth of physics curriculum and requires about three hours for completion. Review the questions to...
Curated OER
Let's Get Connected!
A great lesson introduces your youngsters to electricity. They use internet links, streaming video, and engage in hands-on activities to understand what electricity is and how it works. They build a circuit board, and construct a variety...
Curated OER
A Shocking Experience
Learners differentiate between current and static electricity, conductors and insulators, explain how energy is converted from chemical to electrical, measure voltage of batteries, collect data on voltage, and predict voltage of...
Curated OER
Magnetic Induction
In this electricity worksheet, students learn about magnetic induction plus compare a generator with a motor. Students also review the different kinds of energy and the formulas associated with energy. This worksheet has 28 matching, 10...
Curated OER
Magnets: They Are Totally Attractive
Students classify objects that magnets are attracted to and aren't attracted to. They also magnetize metal. They construct and use a compass. They develop a product which show they explain the properties of magnetism.
Curated OER
How Electric Current Produces Energy
Fifth graders are introduced to the concept of electric currents. In groups, they develop their own game board to test different circuits to determine if they are complete. They record their observations of the energy transfer between...
Curated OER
Magnetism
In this magnets worksheet, students read about the properties of magnets, electromagnets, and magnetic fields. Then students complete 10 matching, 4 fill in the blank, and 8 word problems.
Curated OER
Magnetism
Young scholars investigate the properties of magnets. In this magnetism instructional activity, students construct a magnetic crane and observe the attraction of metal objects.
Curated OER
Magnets
Students demonstrate the process of science by posing questions and investigating phenomena through language, methods and instruments of science as they experiment at four teacher-created stations to explain the fundamentals of magnetism.
Curated OER
Magnetic Energy
In this magnetic energy worksheet, students are given the formula to calculate the magnetic energy of an object. They use the formula to solve for the magnetic energy of the Earth, a geotail, the Sun, and a solar prominence given their...
University of Notre Dame
Safe Science Lab Safety Awareness
Prepare young scientists for the ins and outs of lab safety with a thorough list of symbols, icons, and rules about staying safe during experiments. Additionally, the resource provides several assessment pages for kids to reflect on what...
PHET
Generator
Michael Faraday was self-educated, earned an honorary doctorate from the University of Oxford, invented the first Bunsen burner, discovered the laws of electrolysis, and proved that a changing magnetic field produces a current. In this...
Curated OER
How Strong is Your Magnet?
Students measure the strength of a magnet and graph how the strength changes as the distance from the magnet increases.