NASA
Rocket Races
And they are off! Using Styrofoam meat trays and balloons, individuals build racers that demonstrate Newton's Third Law of Motion. Pupils run their racers three times and make improvements between each trial. To conclude the activity,...
Curated OER
Newton's Second Law of Motion with Simple Machines
First graders study Newton's Second Law of Motion before demonstrating the concept with a simple machine. They sing a song about speed, force, mass, and acceleration. They use simple machines to demonstrate how objects that have a higher...
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
Newton's Second Law of Motion with Balance Toys
Students discuss acceleration and deceleration and participate in brief demonstrations of the Second Law of Motion. They apply the law to a metal balance toy and a plastic balance toy by applying the same force then with different forces.
Curated OER
Skateboards, Rocket Balloons and Newton's Laws of Motion
Students investigate forces. In this laws of motion lesson, students visit the Glasgow Science Center or Techniquest to participate in activities related to the Newton's law of motion.
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
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 class...
NASA
Soda Straw Rockets
Three, two, one, blast off to a better understanding of force and motion with this exciting science lesson! Beginning with a discussion about rockets and gravity, young scientists go on to complete a series of worksheets about net forces...
Curated OER
Balloon Rocket
Young scholars observe a balloon rocket and how it relates to Newton's Third Law of Motion. For this balloon rocket lesson plan, students make a balloon rocket out of balloons, clothespins, straw, fishing line, and duct tape.
Curated OER
Force and Motion
Young scholars experiment with force and motion. In this force and motion lesson, students test gravity using a variety of objects. Young scholars rotate through a series of stations which use force, motion, friction, and inclines....
Curated OER
Introduction to Physical Science
Young scholars discuss Newton's laws of motion. In this motion lesson plan, students watch a video that explains Newton's laws. They play a marble game and watch for laws of motion and force.
Curated OER
Action and Reaction
Students experiment with Newton's Third Law of Motion. In this physics and motion lesson, students complete two experiments to illustrate force and its equal and opposite reaction. Students first work in pairs to exert an equal force on...
Curated OER
Newton's Third Law
Learners use inquiry and observation to explore Newton's third law of motion: for every action there is a reaction. In this physics activity, students rotate through six stations set up with materials and picture directions illustrating...
Curated OER
Force and Motion - Part 2
Pupils test different objects such as dominoes, marshmallows, slides, and more to test their force, motion, gravity, friction, and the concept of matter. In this force and motion lesson plan, students understand that the force an object...
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...
NASA
Water Rocket Construction
What are the basics for building a rocket out of a two-liter bottle? The procedures outline the basics to create an air- and water-powered bottle rocket. Prior to launching the rockets, teams perform safety checks to ensure their designs...
NASA
Project X-51
In a nose-cone to nose-cone competition, which rocket will prevail? Teams form rocket companies to design and build a rocket while competing against other teams in an economic challenge. The team that comes up with the best benefit/cost...
Tech Museum of Innovation
Balloon Astronaut
Design protection from high-speed particles. The STEM lesson plan highlights why astronauts need protection from space debris. Pupils use the design process to design, build, and test a spacesuit that will protect a balloon from a...
Curated OER
What is the Attraction?
Second graders investigate the law of polarity. In this magnets lesson, 2nd graders discover how magnets are used in everyday life and which objects in our environment are magnetic. Students experiment with bar magnets and record their...
Curated OER
Falling Motion
Students design and conduct an experiment on Galileo's Rule of Falling Bodies. In this physics lesson, students collect and analyze data. They create a presentation and share it with the class.
Curated OER
The Science of Swinging
Young scholars learn how a pendulum works in the concept of an amusement park ride. For this pendulum lesson, students are introduced to Newton's first law of motion and how it works in an amusement park ride. Continuous motion and...
Curated OER
Pop Rockets
Students work together to design and build a paper rocket. They place a propellant in the contraption to make it fly. They discover Newton's third law of motion.
Curated OER
Simple Machines
First graders discuss work, force, and energy. They study how work is done. Students discuss various types of work that are done. They act out how work is done. Student draw pictures of types of work they have done.
Curated OER
How Can We See Inertia?
Students conduct 8 experiments to gain an understanding of inertia. Students use a variety of materials to conduct these experiments. Students learn the difference between objects at rest and objects moving in a straight line.
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