Curated OER
Move It, Sir Isaac!
Third graders analyze the work of Sir Isaac Newton as they investigate the laws of motion and force. Inertia is observed through a lump of clay.
Curated OER
Newton's 2nd Law
Fourth graders explore Newton's second law of motion, testing and identifying the characteristics of objects that makes them easier or harder to push. They identify what types of objects are the hardest to move, then test a variety of...
Curated OER
Balloon Rockets
In this balloon rocket worksheet, students experiment with a balloon, clothespin, straw, string and tape to observe Newton's Third Law of Motion in action. Students explain the action force and reaction force acting in the investigation.
Curated OER
Race the Track! Design Challenge
Students focus on a force and motion problem, explore it, reflect on it and apply it while completing experiments. In this motion lesson, students experiment with force and motion by creating a track for testing cars.
Curated OER
Friction in Our Lives
Students explore force and friction. In this force and friction lesson, students discover everyday examples of how friction helps and hinders things we do. Students create a ramp to test the speed of their car. Students use different...
Curated OER
Blast Off!
Fourth graders investigate the third law of motion. In this third law of motion lesson, 4th graders explore the forces necessary for a rocket to launch. Students compare and contrast propellant and fuel. Numerous resources are provided.
Curated OER
IPC Physics Final Review
In this physics review worksheet, students compare experimental variable, simple machines, and Newton's Laws. Students calculate kinetic energy, work, power, speed, and velocity. Students review conduction, convection, and radiation....
Curated OER
Newton's Ist Law
Fourth graders explore Newton's First Law of Motion. They conduct an experiment to observe what happens to a ball that is placed carefully on slippery ice. They also observe what happens to a dowel on the ice, then draw and label...
Curated OER
Trajectory and Range of a Projectile
Students investigate the factors affecting projectile trajectory. In this physics lesson, students calculate the range, time and speed of projectiles using mathematical equations.
Curated OER
Seeing Mathematics in the Forces of Nature
Students study waves and their characteristics. In this wave lesson students calculate the speed of waves, wavelength and the period.
It's About Time
A Moving Frame of Reference
We often remind pupils to cite their references, but this lesson helps them understand there are many frames of reference. Scholars experiment with throwing a ball straight up in the air and catching it. Then they must do it again while...
Curated OER
Newton's 2nd Law of Motion
Students investigate how mass affects the speed of an object. In this physics lesson, students record data on the data table and graph results. They analyze findings and formulate a conclusion.
Curated OER
Newton: Force and Motion
In this forces worksheet, learners use the equations for acceleration and Newton's second law to learn about different motions and forces. This worksheet has 7 problems to solve.
Urbana School District
Physics Intro, Kinematics, Graphing
Some consider physics the branch of science concerned with using long and complicated formulas to describe how a ball rolls. This presentation, while long, is not complicated, yet it covers rolling, falling, and more. It compares vectors...
It's About Time
A Running Start and Frames of Reference
Ttake learning to the next level! Individuals research inertial mass, a physical property of matter, and apply what they learn through a series of activities designed to stimulate the senses. They demonstrate Galileo's Principle of...
DiscoverE
Slinky® Science
Toys are great for learning about physics. Scholars use Slinky® toys to study Newton's laws of motion and types of energy. After a little play, they then model longitudinal and transverse waves with the Slinky® toys.
Curated OER
Forces and Motion -- The Downhill Racer
Students examine the movement of a car on an inclined plane and on a flat surface. Using the amount of drops the car releases, they determine if it was traveling at a constant speed or not. They graph the velocity and acceleration rates...
It's About Time
Life (and Death) Before Seat Belts
Did you know only 80-90% of passengers wear a seat belt in a moving car? Young scholars use clay and a cart to complete an experiment about what happens without a seat belt in a collision. The lesson includes Newton's Second Law of...
Urbana School District
Forces
Is your class struggling with Newton's Second Law? Then show them a presentation that covers everything physics scholars need to know about forces. Starting with gravity, the slides focus on Newton's Laws of Motion, and end with an...
CK-12 Foundation
Archery
Archery is believed to be one of the oldest sports in the world at more than 25,000 years old—meaning it can teach your classes a lot! Scholars learn about the forces interacting in the archery simulation. They control the archer's...
American Museum of Natural History
Train of Thought
Hop aboard the train of thought. A remote learning resource has learners consider thought experiments to consider scientific theories. It provides two examples, one on orbiting bodies and the other on the speed of light, for them to work...
CK-12 Foundation
Water Fountain
Most water fountains are designed to keep the water inside the fountain, but how are they designed to shoot up and out without the water leaving the fountain? Scholars vary the launch angle, fountain height, launch speed, and catcher...
CK-12 Foundation
Doppler Ducks
The study of waves is not a quacking matter! Watch as a duck manipulates the behavior of its waves through its motion. Graphs show the frequency and wavelength of the waves.
Curated OER
Laws of Motion
Students explore centrifugal and centripetal force. In this motion lesson, students expand on their knowledge of motion to study velocity, acceleration, and friction. Students examine multiple objects to demonstrate the laws of motion.
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