Grades:
4th Grade
This is lesson one for a unit plan on circuitry. In this challenge, students will be tasked with planning, designing, and testing both open and closed circuits. To make things more interesting, they
Grades:
6th Grade, 7th Grade, 8th Grade
Students will learn how to construct a moving car robot and program the robot using block-based coding. They will be successful when they have coded the car robot through a maze, they created, without
Grades:
6th Grade
In this lesson, students will identify the significance of the shapes found in and around their home. Making these connections will provide a real-world framework to their understanding of mathematics
Grades:
5th Grade
Students will individually construct straw rockets. Using the launcher, students will learn the concept of Newton's third law of motion: for every action, there is a equal and opposite reaction
Grades:
6th Grade, 7th Grade, 8th Grade
Students will learn how to create a 3D avatar using Tinkercad and develop their digital design skills. Students will explore the concept of avatars and the role they play in digital media.
Grades:
6th Grade, 7th Grade, 8th Grade
Summary: Students are coding and observing robots to try and determine all forces acting on the robot. Materials; Robots that can be coded to move in different ways. Laptops to code. Agenda The
Grades:
6th Grade
This is a lesson plan based on playlist model where students will learn Heat transfer by using a play list and picking the topics according to their own pace. The students will need a computer/ laptop
Grades:
1st Grade
In this engaging lesson, students build a catapult using spoons, popsicle sticks and rubber bands. Students will be able to describe what a catapult is, the use, and vocabulary words.
Grades:
6th Grade, 7th Grade, 8th Grade
This lesson plan will introduce students to the basics of 3D modeling and design using Tinkercad. Materials: Computers with internet access Tinkercad accounts for each student (if your school does not
Grades:
5th Grade, 6th Grade, 7th Grade
Students will learn about the physics of motion and force and use those to create a mini-golf course hole that has obstacles and an environmental awareness theme.
Grades:
5th Grade
This is the 2nd part in a 4-lesson series. This lesson is on the fins and how they work with balanced and unbalanced forces. Students will need the worksheet, the article for read and reflect, foam
Grades:
6th Grade
In this lesson, students will be learning about the challenges of farming in space for future settlements. Specifically they will focus on the difficulty of testing whether plants will grow in soil
Grades:
6th Grade, 7th Grade, 8th Grade
Are you ready to build?! In this hands-on lesson students build a model of a robot using LEGOs. They will discuss the advantages and disadvantages of robots and determine what task their model robot
Grades:
6th Grade
In this lesson, students will identify the significance of the numbers found in and around their home. Making these connections will help strengthen number sense and provide a real-world framework to
Grades:
6th Grade
Students construct models of various molecules, create histograms of the frequency of elements, and diagram parts of an atom. Students will deepen their understanding of matter--that tiny particles
Grades:
8th Grade
This activity can be classified as Performance Based Learning. Student teams take on the role of engineers as they redesign existing packaging that is already in the market. The math focus is on
Grades:
5th Grade
In this lesson, students will be measuring the dimensions of the classroom, then calculating its perimeter, area, volume and (optional) surface area. Then they will participate in a design challenge
Grades:
6th Grade, 7th Grade, 8th Grade
Students will learn about the food chain, and the American Kestrel's place in it. Students will be able to classify organisms, construct a model of the North American Kestrel’s role in the food web
Grades:
4th Grade
This would be an end of the unit project. Students would need prior knowledge about animal adaptations and biomes/habitats. Students will use Flipgrid to share, but you could use any other video app
Grades:
4th Grade, 5th Grade, 6th Grade
Students will use engineering practices to build a bridge to see how much weight their bridge will support. This lesson gives students a better understanding of how bridges are constructed and how
Grades:
8th Grade
Students will use knowledge of translation, rotation and reflection to create unique 3d designs. Students will be designing backpack tags using geometry principals on graph paper, then transferring
Grades:
5th Grade
Students develop an understanding of patterns and how genetic information is passed from generation to generation. They also develop the understanding of how genetic information and environmental
Grades:
3rd Grade, 4th Grade, 5th Grade, 6th Grade, 7th Grade, 8th Grade, 9th Grade, 10th Grade, 11th Grade, 12th Grade
In this hands-on lesson, students use the engineering design process (EDP) to create a prototype of a device that can prevent squirrels from accessing a bird feeder. This is a great way to integrate
Grades:
8th Grade, 9th Grade, 10th Grade, 11th Grade
In this activity, students will perform a hands-on, inquiry-based investigation of the tradeoffs involved in hard rock mining. The object is to purchase and develop a mine, safeguarding the
Featured Lesson Plans
Check out these notable lesson plans.

Featured
Best Class Plant
Grades:
1st Grade, 2nd Grade, 3rd Grade
This lesson is centered around the book, The World's Best Class Plant. It is intended for 1st-3rd grade. Ideally, teachers would use this lesson at the beginning of the year so they can have their

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Magic Magnets: Flying Butterfly
Grades:
3rd Grade
Students will have the opportunity to explore the magnetic field in small groups or independently. Students will explore the forces by demonstrating how a paper clip can float in the air using a

Featured
STEM Tank! Part 2
Grades:
3rd Grade
Students will go through the engineering design process to come up with a product that will solve a real life problem. By the end of the unit, students will design their product, make their product