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NASA
Pop Can Hero Engine
Hang a soda can from a string and watch it spin by the force created by water streaming out of slanted holes. This plan provides background information, detailed materials and procedures, discussion questions, a lab worksheet, and...
Curated OER
Isaac Newton's Third Law of Motion
Ninth graders experiment with Isaac Newton's Third Law of Motion. In this Third Law of Motion lesson, 9th graders develop an experiment that shows their understanding of this theorem. They work in small groups to read an article at a...
Curated OER
Balloon-Powered Car
Attractive and logical instructions are provided for constructing a balloon-powered car. Young physical scientists measure the distance their car travels and record it on a pre-printed data sheet. The make alterations to improve the...
NASA
Newton Car
If a car gets heavier, it goes farther? By running an activity several times, teams experience Newton's Second Law of Motion. The teams vary the amount of weight they catapult off a wooden block car and record the distance the...
Curated OER
Newton Rocket Car
Learners observe a demonstration of Newton's third law of motion using a small wooden car. They discuss Newton's third law of motion and what happens to motion if the mass or acceleration is increased, construct their car, and record...
Curated OER
The Lost Newton's Laws Lesson
Students explore momentum. In this physics lesson, students perform an experiment in which two balls are released on slanted boards while students observe which ball will go the farthest and the fastest. Students define and explain...
Curated OER
Newton's Hat Trick
Young scholars are challenged to develop skits illustrating each of Newton's three laws of motion. They are asked to identify examples of Newton's laws in sports. Students are asked how does Newton's third law allow a runner to run?
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
Destination Outer Space
Students investigate space travel. In this space travel lesson students examine space exploration history, engineers and scientists involved in space exploration, and Newton's third law of motion. Students make rockets.
Curated OER
Newton's Third Law of Motion
Students move through five stations demonstrating Newton's Third Law of Motion. In this Newtonian physics lesson, students watch as the instructor uses a firecracker to demonstrate action and reaction. The students travel to five...
Teach Engineering
May the Force Be With You: Thrust
Force the plane through the air. The lesson introduces the force on an airplane that makes it go forward. Pupils learn how Newton's laws of motion apply to flight in the eighth segment of a 22-part unit on flight.
Curated OER
Newton's Third Law of Motion
Learners explore Newton's 3rd Law of Motion. In this physics instructional activity, students participate in various experiments that demonstrate the idea of action/reaction, such as a balloon launch, a skateboard activity, and a spring...
Micron Technology Foundation
Forces of Motion: Rockets
Young scientists design a rocket to launch using Newton's Laws of Motion in order to discover for themselves the forces of motion.
Curated OER
Balloon Rocket
Learners observe a balloon rocket and how it relates to Newton's Third Law of Motion. In this balloon rocket lesson plan, students make a balloon rocket out of balloons, clothespins, straw, fishing line, and duct tape.
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
Newton's Third Law
Students describe an everyday situation which demonstrates Newton's Third Law. They state Newton's Third Law;"Every action has an equal and opposite re-action, or every force has an equal and opposite force" in their own words. ...
Curated OER
Newton's Third Law
Students use inquiry and observation to explore Newton's third law of motion: for every action there is a reaction. In this physics lesson, students rotate through six stations set up with materials and picture directions illustrating an...
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
Newton's Third Law of Motion
Seventh graders are introduced to Newton's Third Law of Motion. In this physics instructional activity students examine the concept of thrust as one of the forces acting on aircraft.
Curated OER
How Do Airplanes Get Off the Ground
Students construct various types of paper airplanes, exploring action and reaction forces by conducting a paper airplane rodeo. Students then discuss how Newton's Third Law of Motion affected their planes.
Curated OER
Rockets on a Shoestring Budget
Students, operating under simulated budget constraints, build pop-rockets and launch them. Working in pairs, they complete budget worksheets and use their "Blast Off Bucks" to pay for the construction. They then redesign their rockets...
Curated OER
How Do Probes Get To Space
Students investigate how force works to propel rockets into outer space. In this physics lesson, students use a drinking straw, fishing line, a balloon, and tape to explore how force works in outer space. Students repeat the experiment...
Curated OER
Sports and Science
Using footballs, basketballs, tennis balls, and more, learners conduct experiments to illustrate Newton's Laws of Motion. The experiments are conducted outside, and require them to throw, kick, and hit a variety of balls. Your...
Curated OER
Kepler's Third Law
High schoolers use Kepler's third law to derive the velocity in a circular orbit of any radius, and identify the Earth escape velocity.