What will the transportation of the future look like? What types of engineering or technology will vehicles feature? These Physics lessons explore both established and alternative forms of
Students learn the history of rocketry, and the science behind rockets, and then design, build, and launch bottle rockets with compressed air and water.
This lesson is designed to have students investigate how objects, of different masses, will be affected when dropped to Earth. The lesson begins with a phenomena video - this video connects the idea
This lesson is a continuation of lesson 1. Students will learn about Newton's Laws of motion and apply those concepts to their car designs.
Students will use a kid friendly online CAD modeling program to create a car design. Students will then carve their car using floral wet foam, wheels and axels to race in the derby.
This is a two-day introductory lab exercise using video analysis to derive the equations that govern projectile motion. It employs elements of Modeling Instruction to engage students in doing science.
Students get to discover the relationship between solutes and solvents in relation to concentration. As an inquiry based lab, students will mix their own concentrations of Kool-Aid or other powdered
This is lesson 8 of 8 Basic Handling Lessons. This is the culmination Attitude Test in which students apply all of the Handling lessons to an actual flight. This is a 3 minute flight simulator lesson
This is lesson 7 of 8 Basic Handling Lessons. This unit culminates in the Attitude Test in which students apply all of the Handling lessons to an actual flight. This is a 3 minute flight simulator
Students work as engineers using the Engineering Design Process to design and create a parachute that will safely land a "rover" on Mars! This STEM activity uses easy-to-gather materials for parachute
This lesson has students investigate how forces and motion affect a car fueld by CO2 gas. Students have a design challenge to utilize their science knowledge to create a successful car.
Day 3 of 3 in a skateboard building unit. Student will apply Newton's law skateboarding, deconstruct and construct a basic skateboard, learn basic safety and outdoor riding rules.
This is lesson plan two of three in a skateboard building unit that applies Newtons Laws to skateboarding. Students will learn the parts of a skateboard, construct a simple skateboard, learn safety
In this lesson, students will observe the different ways a sheet of paper can fall. They will face two challenges with paper, the final challenge being to create and test a parachute for a small
This plan is meant for 3 days of work. Two books go with this plan. Two types of model rockets are included in this plan. Discussions and entries into a STEM Notebook are part of this plan.
This lesson gives a hands-on way of teaching the 2nd law of motion. Students are able to experiment with different objects with different masses to discover how mass affects force and acceleration.
Today students will design a mini golf hole. Their hole theme should be based on the inventor they researched.
A 4-8 grade STEM lesson 4 of 4 skills improvement and evaluation. Career outlook for UAV/Drone Pilots, paths to becoming a commercial drone pilot. A review of flight dynamics, and the steps that had
This lesson plan describes the different process points of construction of a Truss Bridge and why these bridges are useful. This lesson plan includes objectives, assessments and some samples of Truss
This lesson is lesson 3 of 4 so it is designed to be used in conjunction with the two previous lessons. The students will continue using their newly acquired drone flying skills with both DroneBlocks
This is a detailed math and engineering based lesson plan that covers the processes of building and testing an Archimedes screw for water movement. Students will be working in a STEM summer camp in
This lesson plan focuses on the use of several materials to create a rocket and a launcher. Remodel the rocket as needed to validate Newton’s third law of motion and projectile motion.
Simple Machine: Pulley, helping Rapunzel escape the tower
Using pumpkins, design and create Cinderella's carriage. This lesson can demonstrate Potential Energy turning into Kinetic Energy
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