Physics Classroom
The Physics Classroom: Circular and Satellite Motion: Universal Gravitation Law
Through interactive illustrations and practice problems, students study Newton's Universal Law of Gravitation.
Physics Classroom
The Physics Classroom: Newton's Laws: The Big Misconception
While most people know what Newton's laws say, many people do not know what they mean. This tutorial allows students the ability to understand their meaning and to believe their implications.
Sophia Learning
Sophia: Newton's Third Law: Lesson 2
This lesson will show that when a force is exerted on an object, an equal and opposite force is produced, as stated in Newton's Third Law. It is 2 of 3 in the series titled "Newton's Third Law."
Physics Classroom
The Physics Classroom: Newton's Laws: Finding Individual Forces
Through illustrated examples and interactive practice problems, students find the value of forces acting upon objects using force equations.
Cosmo Learning
Cosmo Learning: Newton's Laws
Do you need to review any of Newton's three laws? This website contains a video collection on Newton's Law from a physics course at East Los Angeles College. In twelve lectures, each law is explained with examples. Also discussed is...
TeachEngineering
Teach Engineering: Mechanics Mania
Through ten lessons and numerous activities, students explore the natural universal rules engineers and physicists use to understand how things move and stay still. Together, these rules are called "mechanics." The study of mechanics is...
CK-12 Foundation
Ck 12: Plix Series: Projectile Motion: Object Launched Horizontally
[Free Registration/Login Required] Use the interactive diagram to solve a projectile motion problem. After the activity, answer a challenge question to check for understanding.
Physics Classroom
The Physics Classroom: Circular and Satellite Motion: The Value of G
In learning about the Law of Universal Gravitation, students explore the value of G, and understand why this value is so location dependent on Earth.
CK-12 Foundation
Ck 12: Plix Series: Newton's First and Second Laws
[Free Registration/Login Required] Read a force scenario, and then analyze the graphs provided to gain an understanding of inertia and force. After the activity, answer three challenge questions to check for understanding.
Cosmo Learning
Cosmo Learning: Physics 240: Science and Engineering I
A collection of video lectures from a physics for science and engineering course taught at the University of Missouri-Kansas City. The course discusses the concepts of mechanics, wave motion, sound, heat and thermodynamics in thirty-five...
Georgia Department of Education
Ga Virtual Learning: A Brief History of Astronomy
In this interactive module students will explore what different ancient cultures believe was an explanation of the stars and planets. They will look at how the work of Nicolas Copernicus revolutionize the world of astronomy and learn how...
Physics Classroom
The Physics Classroom: Vectors: Forces in Two Dimensions: Addition of Forces
In this tutorial, examine the effect of forces acting at angles to the horizontal, such that the force has an influence in two dimensions- horizontally and vertically.
Cosmo Learning
Cosmo Learning: Fundamentals of Physics
A collection of video lectures from a fundamentals of physics course taught at Yale University. The course is an introduction to physics and discusses Newtonian mechanics, special relativity, gravity, thermodynamics, and waves. Course...
Other
Wikibooks: Physics Study Guide
A handy resource that gives an overview of equations and definitions pertinent to an introductory, college-level physics course, with two of its three sections focusing on motion-related topics and principles.
Soft Schools
Soft Schools: Physics Quizzes: Force, Mass Acceleration
Assess your understanding of force, mass and acceleration and the relationship amongst the three with this interactive multiple choice quiz. Immediate feedback is offered.
Annenberg Foundation
Annenberg Learner: Colliding Cars
Try to predict what will happen in three different bumper car collisions. For each collision, you'll be shown two possible outcomes.
PBS
Pbs Learning Media: Acids and Bases: Making a Film Canister Rocket
ZOOM cast members mix different amounts of baking soda and vinegar to see which combination produces the most carbon dioxide for launching a film-canister rocket. [3:23]
TeachEngineering
Teach Engineering: Rockets
This unit teaches students how and why engineers design satellites to benefit life on Earth as well as allows students an opportunity to explore motion, rockets and rocket motion. Students discover that the motion of all objects...
CK-12 Foundation
Ck 12: Physics Simulation: Drawbridge
[Free Registration/Login Required] Learn about torque balance in the context of a medieval drawbridge using this interactive simulation. A PDF worksheet and a video tutorial are also available. [3:47]
TeachEngineering
Teach Engineering: Up, Up and Away! Airplanes
The airplanes unit begins with a lesson on how airplanes create lift, which involves a discussion of air pressure and how wings use Bernoulli's Principle to change air pressure. Following the lessons on lift, students explore the other...
Michigan Reach Out
Nasa: Soda Pop Can Hero Engine
Students explore all three parts of Newton's Laws of Motion by observing a spinning pop can.
Concord Consortium
Concord Consortium: Newton's Laws at the Atomic Scale
Explore how Newton's three laws apply to the world of atoms and molecules. Start with the originally contradictory observation of Brownian motion. Then, each law is addressed at the atomic level.
Sophia Learning
Sophia: Newton's First Law: Lesson 1
This lesson introduces Newton's First Law, that inertia causes objects at rest to remain at rest, and objects in motion to remain in motion. It is 1 of 3 in the series titled "Newton's First Law."
Sophia Learning
Sophia: Newton's First Law: Lesson 2
This lesson introduces Newton's First Law, that inertia causes objects at rest to remain at rest, and objects in motion to remain in motion. It is 2 of 3 in the series titled "Newton's First Law."
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