Physics Classroom
The Physics Classroom: Circular and Satellite Motion: Energy in Satellites
Through interactive practice problems and illustrated examples, students explore energy relationships for satellites.
Physics Classroom
The Physics Classroom: Work, Energy, and Power: Application/practice Questions
Through illustrated examples and practice problems, students apply the relationship between work and mechanical energy change to a variety of motion scenarios in order to test our understanding.
Physics Classroom
The Physics Classroom: Circular and Satellite Motion: Roller Coaster Model
An interactive playground for students to explore the physics of roller coasters. Learners investigate by changing the variables of force, velocity, friction, and vectors. Energy bar charts are displayed as the coaster car moves along...
CK-12 Foundation
Ck 12: Earth Science: Energy Conservation
[Free Registration/Login may be required to access all resource tools.] Overview of how energy is used, and how it can be conserved.
Physics Classroom
The Physics Classroom: Kinetic Energy
Kinetic energy is defined and explained--learning exercises are included to assess your understanding.
Concord Consortium
The Concord Consortium: Molecular Workbench: Forces and Systems
See how motion is converted and the energy associated with the motion is used to do work.
Science Education Resource Center at Carleton College
Serc: Investigating Projectile Motion: Creating a Catapult
This lesson is for 9th grade physical science students. It begins with an inquiry-based lesson using a projectile motion computer simulation. It culminates with students building a catapult; applying and connecting science knowledge from...
TeachEngineering
Teach Engineering: May the Force Be With You: Drag
This lesson explores the drag force on airplanes. The students will be introduced to the concept of conservation of energy and how it relates to drag. Students will explore the relationship between drag and the shape, speed and size of...
Science Education Resource Center at Carleton College
Serc: Using Your Marbles: Making Energy Work for You
This activity is based on the common experiment of running a marble down a ramp to do work on a cup. Students will be able to see the relationship between mass and energy of the marble and the ramp height.
Ducksters
Ducksters: Physics for Kids: Motion Glossary and Terms
Kids learn about glossary and terms in the science of physics and motion. Definitions for words such as momentum, force, work, energy, gravity, scalar, vector, power, and more.
Other
Ward's Science: Speedy Energy
This is an interactive inquiry where students will investigate the speed of an object and the energy it exerts as it crashes into other objects. Students will understand that the more speed an object has, the more energy it has in a...
Physics Classroom
The Physics Classroom: Work, Energy, and Power: Mechanical Energy Is Conserved
In this interactive exercise, explore the quantitative relationship between work and mechanical energy in situations in which there are no external forces doing work.
PBS
Pbs Kids: Zoom Printables & Activities
Fantastic variety of printable activities that cover motion-related principles. Topics include the following: experiments (engineering, structures, forces and energy, fluids, sound and light, patterns, human body); arts & crafts;...
Other
Center for Education Partnerships: The Marble Roll
In this Science-athon, students try to make their marble roll the farthest across a flat surface, using their knowledge of forces, motion, and energy to guide them through their apparatus design. Teachers must enroll online.
TeachEngineering
Teach Engineering: Ramp and Review (For High School)
In this hands-on activity - rolling a ball down an incline and having it collide into a cup - the concepts of mechanical energy, work and power, momentum, and friction are all demonstrated. During the activity, students take measurements...
New York University
Nyu: Math Mol: Motion of Molecules
Examine the link between molecular motion and energy. Observe the movement of a molecule at room temperature. Learn about the different types of molecular motion.
Mocomi & Anibrain Digital Technologies
Mocomi: Types of Motion
Learn about the study of mechanics, motion, the laws of motion, and the different types of motions.
TeachEngineering
Teach Engineering: Amusement Park Ride: Ups and Downs in Design
This unit has students design and build foam tubing roller coasters. The design process integrates energy concepts as they test and evaluate their designs that address the task as an engineer would. The goal is for students to understand...
BBC
Bbc: Gcse Bitesize: Forces and Elasticity Aqa
This lesson focuses on forces and elasticity. Forces are responsible for changing the motion of objects. If more than one force is present, the shape of an object can also be changed. A link to a test is provided.
Other
Puhinui School: The Atoms Family: The Mummy's Tomb: Raceways
Help the Mummy build a rollercoaster to entertain the Atoms Family monsters by investigating the concepts of kinetic and potential energy.
Alabama Learning Exchange
Alex: Pendulums Swing Into Motion
This lesson will allow students in groups to describe the relationship between energy, work, and force through the use of pendulums. The results will be reported through a graphing activity as well as a paragraph written and printed on...
TeachEngineering
Teach Engineering: Imagine Life Without Friction
Students are introduced to the concept of inertia and its application to a world without the force of friction acting on moving objects. When an object is in motion, friction tends to be the force that acts on this object to slow it down...
NC State University
The Engineering Place: Roller Coasters [Pdf]
A lesson where learners construct a roller coaster and test it under different conditions to learn about force and motion.
TeachEngineering
Teach Engineering: Bombs Away!
In this hands-on activity students learn create a device to protect a dropped egg and deliver it close to a target. Students learn about engineering as well as potential and kinetic energy and energy transfer
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