This lesson compares and contrasts different hydroponic systems and their benefits and setbacks. Then, the plan walks the students through the hands-on activity of creating a Kratky bin for hydroponic
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 plan walks you through our engineering of a garden box and extended lesson of our plant growth.
This is session 4 of a 4 session unit on innovative thinking, agricultural engineering, and farm model making. This is the second session of hands-on farm model making. Students will work with a
This is session 3 of a 4 session unit on innovative thinking, agricultural engineering, and farm model making. In this session students begin to work with a partner or small group to construct their
This is session 2 of a 4 session unit on innovative thinking, agricultural engineering, and farm model making. This session introduces students to agricultural engineering. It discusses how due to a
This is session 1 of a 4 session unit on innovative thinking, agricultural engineering, and farm model making. The first session introduces students to Dr. Temple Grandin, a creative thinker who has
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
Students who have been studying logarithms can apply them using a chemistry lab to discover the pH of acetic acid (white vinegar) and even compare this to other acids.
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
Students will use jelly beans to model the variation that results from sexual reproduction. They will use Punnett Squares to practice probability.
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
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
Students will construct a rocket by exploring the relationship of the mass in the nose cone to the success of a launch. Students will learn about "center of mass' and how to find it, as well as the
Plants are the basis for nearly all agricultural production. Agricultural plant crops produce food, fiber, fuel, and aesthetically pleasing plants. Plants utilize energy from the Sun to convert water
Students will use the engineering design process to plan and build a bridge that will hold the most amount of weight.
Notes Prerequisites: This lesson requires prior experience with Edison Robots. Context: This lesson can be taught to a single class or used in an after-school coding/robotics club. Students should be
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Math Magic through Coding!
In this 2nd grade STEM lesson, students will learn how symbols (directional arrows) can be used to program an object's movements. They will develop an algorithm using a sequential graphic organizer to

Intro to MS Make Code (Eat the Food)
MS MakeCode is the perfect stepping stone into the world of Scratch. Students will be able to create a working video game in one class period. As we all know classic video games were not built over

Kill the Dyes
In this lesson students will discover harmful effects and chemical makeups of artificial ingredients, specifically food coloring and red dyes. Students will experiment with and demonstrate capillary