Curated OER
Projectile Motion
Young scholars observe projectile motion and calculate the speed of a baseball based on the time and distance traveled. They record the time, measure the distance, and draw the path of the ball's travel on a data table.
Florida International University
Designing an Autonomous Underwater Vehicle (AUV): Concepts in Lift, Drag, Thrust, Energy, Power, Mass, and Buoyancy
Engineer an autonomous underwater vehicle (AUV) to study concepts of physics. Using household materials, collaborative groups design and build an AUV and then test Newton's Laws of Motion as they apply them in underwater environments...
Curated OER
Newton's Third Law of Motion
Students move through five stations demonstrating Newton's Third Law of Motion. For this Newtonian physics lesson, students watch as the instructor uses a firecracker to demonstrate action and reaction. The students travel to five...
Curated OER
Newton's Three Laws of Motion Lesson Plan
Students explore Newton's three laws of motion using a variety of activities. In this physics lesson plan, students calculate the average speed of a vehicle they constructed using distance and time information. They identify and draw the...
Curated OER
Lesson 3: Acceleration and Force
A nine-page physics resource supports your activity on acceleration. A step-by-step lesson plan walks you through the materials you need, the background information, steps for leading experimentation, and the explanation of the results....
Curated OER
Science in Focus: Force and Motion
Learners explore force and motion through a series of experiments. In this physics lesson, students create and interpret speed graphs. They build an electromagnet and explain the factors affecting its strength.
LABScI
Harmonic Motion: Pendulum Lab
Several times throughout history, groups of soldiers marching in rhythm across a suspension bridge have caused it to collapse. Scholars experiment with pendulums, resonance, and force to determine why this would happen. First, pupils...
Curated OER
Boat Hull Design
Working in small groups students develop three alternative boat designs. They discuss the rationale for the type of hull, propeller, location of ballast, and type of building material used in their design. They build their boat.
Curated OER
Balloon Powered Race Cars
Students examine Newton's Law of Motion and use the formula to calculate speed. For this laws of motion lesson students create a balloon powered car and calculate its speed and distance.
Curated OER
3-2-1 Pop!
Students explore rocketry and demonstrate how rocket liftoff is an application of Newton's Laws of Motion. They construct a rocket powered by the pressure generated from an effervescing antacid tablet reacting with water.
Curated OER
Relaxing with Impulse
Students discuss Newton's second law of motion in terms of momentum and impulse using examples of landing on concrete versus dirt if you were to jump off an elevated platform or football players wearing protective padding. Mathematical...
Curated OER
Force and Motion Project
In this force and motion worksheet, students create a picture book and answer 7 questions on force and 12 questions on motion. There are 4 extra credit questions.
Cornell University
The Physics of Bridges
Stability is key when building a bridge. Scholars explore the forces acting upon bridges through an analysis of Newton's Laws and Hooke's Law. The activity asks individuals to apply their learning by building a bridge of their own.
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
Newton's Laws
Students state Newton's Laws of Motion. They explain how force, mass and acceleration are related. They analyze action and reaction forces, calculate momentum,
and explain conservation of momentum
Curated OER
Newton and his Laws
Students explore Newton's laws, including what they state, and what the intuitive meaning is of the first and third laws.
Curated OER
Newton's Second Law
Students examine how physical quantities and laws depend distance, mass and time. They examine the MKS system; meter, kilogram and second, for doing calculations.
Curated OER
Free Up the Ketchup!
Students, in teams, use given materials and their knowledge of Newton's First Law to create a device that will remove a sticky ping pong ball from a 16-oz. cup (which represents ketchup stuck in a bottle.)
National Center for Case Study Teaching in Science
Applying Newton’s Third Law of Motion in the Gravitron Ride
Here is a collection of readings to be discussed in the science classroom. This one is in the form of a dialog between two boys in an amusement park, talking about the forces involved in a Graviton ride. Questions are listed at the...
Curated OER
The Art of Forces and Motion
Students view a video and use their knowledge of forces and motion to create an art piece. In this forces and motion lesson, students research forces and motion vocabulary and view a QuickTime video. They apply their knowledge by...
Virginia Department of Education
The Rate of Motion
How much time does it take to jump over three balloons? Pupils calculate the speed of tasks that require different motions. They determine motions for tasks such as walking, skipping, hopping, and jumping before creating a spreadsheet...
LABScI
Viscosity: The Fluid Lab
There's more to fluids than meet the eye—they include gases, liquids, and polymers, too! Scholars complete three hands-on activities exploring different properties of fluids. They explore viscosity by measuring the resistance, or...
Curated OER
Crash Course in Flight
High school physicists demonstrate Bernoulli's Principle by blowing on different items and finding that they do not move in the expected direction! They apply Bernoulli's equation to the flight of an airplane. This well-organized lesson...
Curated OER
Newton's First Law Crash!
Students define what inertia is in their own words. In this physics lesson, students observe what happens to their action figure as the skateboard stops suddenly. They apply Newton's 1st law to real world situations.
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