
Students design and test a device for an egg drop in this engaging and hands-on lesson. They will document their data, make modifications to designs, and assess what the outcome is of their own drop

The purpose of this lesson is to introduce and apply the concept of frequency. Students will begin by a motivating “click the mouse” challenge. This will help them to develop the concept of frequency

In this lesson, students will understand the impact of oil spills in the ocean. They will work cooperatively to come up with solutions and materials to clean up a simulated oil spill. Students will

Students will research and understand bird evolution. They will identify the functions of body parts and ecosystems. They will predict evolutionary changes that a specific bird will go through and the

The goal of these lessons is to introduce work and power and then apply it by having students find the power produced by a future NFL player. The students will then be challenged to see what type of

Students design and build air powered gliders in this engaging lesson. This is a fun way to teach and apply principles of force as they apply to flight including lift, gravity, thrust, and drag

Aerospace to Sports explores the concept of how aerospace engineering has impacted sports, specifically exploring the design of golf balls. Students learn about how the industry employs engineering

An exploratory lesson on the relationship between pi and circumference. The students can measure the circumference of everyday items and explore the ratio of pi between the circumference and diameter

Bridge Design Challenge For this design challenge, each group will build a bridge out of 200 popsicle sticks and 1 bottle of Elmer’s glue. The bridge will span a 12 inch gap between tables. After the

Students will test the relationships between mass, speed, and kinetic energy using a toy skateboard.

Students will be creating their own arcade games with recycled materials. One idea can change the world! During this activity students will be going through the engineering design process.

After completing a ratio table and researching the benefits of the ingredients in chicken feed, students will now be able to build a bag of chicken feed for a local farmer!

This activity walks students through the basics of using the 3D modeling software TinkerCAD and how to transfer their image to a 3D printer.

This lesson walks students through reimagining a schoolyard space by calculating scale model and creating scale objects.

Stage 2 of a 4-stage project. Students will continue to research the pros and cons of small farms. Students will revisit their original farm drawing, ensuring they have different key features, and

Stage one of a 4 stage project. Students will research crops and seasons to create a blueprint that will serve as the guidelines for building a small functioning farm.

This lesson plan is designed to teach students about Newton's 3rd Law of Motion through hands-on experimentation. Students will build cars and test the effects of collisions to gain a deeper

This lesson explores how cars can be designed to ensure the safety of children passengers. Through a read- aloud, the students will see how a young child was able to design a car in the story "If I

This is part two of a two-part lesson set. In this lesson, students will conduct test flights on their rockets, gather and analyze their flight data, and make improvements based on the results. They

This is one lesson in a two part lesson set. In this first lesson, students review balanced and unbalanced forces in preparation for how these forces apply to rockets! They will then research rocket

The students will be working and pretending that they work for an engineering company that is designing a bridge. The Department of Transportation wants to see a model of the bridge, so they will be

This lesson takes place in a classroom over two weeks. Students may work in small groups of 2-3. Prior to the robotics challenge, teachers should facilitate student discussion through guided lessons

Students use a constant velocity, battery powered vehicle to determine the relationship between position and time. They use their results to determine the formula for speed (change in position/time).

How can you get objects from one location to a specific dropping point using a cable? Students utilize the Engineering Design Process and their learning of Newton's Laws of Motion, slope, mass and