Students will establish teams and use STEM skills to create models of a Phobos Base that fits in an imaginary 80cm cube and sits on a 1-meter project base. It includes facilities, rocket landing site
This is part 2 of a Heredity lesson. In this portion of the lesson the students will work in collaborative pairs to mate the dragons the created in part 1. Furthermore, they will create Punnett
In part 1 of this lesson, students will use the laws of heredity to create a dragon based on the random toss of a coin. A chart has been created to assign genotypes and the corresponding phenotypes
This lesson includes 1 or 2- 50 minute period(s) worth of Greenhouse gas exploration. Students are creating and refining a drawn model of greenhouse gasses in our atmosphere, reading and discussing
Through this kindergarten STEM project, students will develop an understanding of weather patterns and the changes that occur during different seasons. By engaging in hands-on activities, observations
Today we will make new crayons from old and broken crayons. To do this we will: listen to an informational text describing how crayons are made. make a solar oven. describe the steps we take to make
Students are given a mission to map and collect resources with a robot needed in a Mars colony. Students need to use coordinate points to create a route from a starting point to a destination for
This week-long experience teaches students about the computer science and robotics behind NASA's Mars Rover program using Ozobots as Mars Rovers. Students will first build background on the history of
This hands-on lesson uses vermicomposting to apply virtually all of the science & engineering practices as well as several in math. Enough for a unit but a few stand-alone pieces can help your
This lesson is modeled after STEMAzing's lesson, "Picture Perfect Rover Cell Phone Holder”. Students will build a cell phone holder for their Edison Bot, plan a drive for the Bot to collect photos or
Students will be introduced to the concept of agrivoltaics: what it is, why it's important, how it works.
In this hands-on lesson, students will explore a solar panel kit. They will measure all aspects of the kit and create a scale drawing, using proportions.
In this hands-on lesson, students research the solar system. Then, they work in groups to create a solar system model and present it to the class.
This lesson is about geometric shapes. Student will watch videos about the solar system. They will view the geometric shapes in the solar system and draw pictures of them.
In this lesson, students will learn about planets and stars and their relationship with each other. They will create a planet or star and then, as a group, create a song to present to the class.
Students learn about celestial and transitory objects in the sky while creating a piece of art depicting a constellation. The constellation can be seen during the day by holding it up. It helps
Within this lesson, students will present their master-planned community to a test audience and potential clients. Focus is on presenting to the client rather than reading information off the slide
In this engaging lesson, students will design and build a Mars Resource Transport (basically a wagon) on wheels and axles. They have to meet build criteria based on volume and a budget for resources
Students will explore the field of astrobiology and the possibility of life on Mars through research, critical thinking, and hands-on activities. Students will design and create a model Martian
During this lesson students will explore the concept of erosion. Using a Stream Table, students will have the opportunity to discuss theories with their classmates, observe erosion, draw a model and
In this hands-on lesson, students will use robotics to create an automated system that simulates the cleanup of a natural disaster. In this case, a nuclear reactor explosion. Students will program
This is the 3rd lesson in the series. In this lesson, students will select one building from their master-planned community to construct a 3D model that absorbs/releases 8% less than the surrounding
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Design a Course with Friction

