Grades:
2nd Grade
Students will use the engineering design process to plan and build a bridge that will hold the most amount of weight.
Grades:
6th Grade, 7th Grade, 8th Grade
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
Grades:
8th Grade
This lesson took place in a 90 minute after school STEM club (could work in 2 - 45 minute class periods). Students may work in small groups of 2-4. An emphasis on sample collection and analytical
Grades:
6th Grade, 7th Grade, 8th Grade, 9th Grade
Summary - Students will be identifying the structures and functions of plant reproductive parts. Materials - Flowers, scissors, magnifying lenses, resource materials (internet/textbook)
Grades:
Kindergarten, 1st Grade, 2nd Grade
Students will learn and explain about pollination and how it helps plants to grow and reproduce. After reading about pollinators, students will collaborate and communicate effectively with their peers
Grades:
6th Grade
In this 3rd and final lesson in a series of 3, students examine prior knowledge about the real-world problem of the Great Pacific Garbage Patch and apply their findings to design solutions. Students
Grades:
Kindergarten, 1st Grade
Create a Bee-Bot board game, and program the Bee-Bot to move through the game board. Students will use the steps of the engineering design process as they work as a team to create and play their game
Grades:
4th Grade, 5th Grade, 6th Grade
Summary- Students will redesign their egg protector for trial 2, record their observations, and respond to overall reflection questions for the project. Materials- Science Notebook Pencil/Pen
Grades:
3rd Grade, 4th Grade, 5th Grade, 6th Grade, 7th Grade, 8th Grade, 9th Grade, 10th Grade, 11th Grade, 12th Grade
In this engaging lesson, students explore how size, strength, weight and time constraints can impact space transportation. There are a variety of resources included with this lesson.
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:
3rd Grade, 4th Grade, 6th Grade, 7th Grade
You could do this together, step by step or give them all of the materials and information needed to do it by themselves. Could be a group activity or an individual activity so each student can take
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:
6th Grade
In this unit, students will study the effects of acid rain and chemically engineer an environmentally friendly solution to neutralize the acid in a simulated river contaminated by factory run-off
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:
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
Students will be designing and building a strong house able to withstand hurricanes and tropical storms. In the lesson, students will compare their work with the actions of a character from If I Built
Grades:
3rd Grade, 4th Grade, 5th Grade, 6th Grade
Students will create an original design using only plastic bags in this creative lesson. They will reuse plastic bags to create a useful product they could sell. Students will use evidence to
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Bee-Bot Mazes
Grades:
Kindergarten, 1st Grade
Students collaborate to create mazes for the Bee-Bot robot. Students also work in teams to plan and create programs to move Bee-Bots through the maze. For this lesson, students work in groups of 2-3
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:
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 apply their understanding of the engineering design process to build a tower made of index cards that can hold an object. There is a link to a prerequisite lesson
Grades:
2nd Grade
Lesson Summary: 2nd Grade students listen to the story; Sadie Sprocket Builds a Rocket and reflect how they would create and design a space lander/rover. We watch the video; Curiosity; Mars Rover and
Grades:
7th Grade, 8th Grade
Summary: In groups students will construct a Rube Goldberg device made completely out of found objects that includes at least 5 simple machines and students will identify the energy transformations
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Scatterplots Using Stomp Rockets
Grades:
8th Grade
Students will use stomp rockets to collect data. With this data they will create and analyze trends of a scatterplot.
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
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Check out these notable lesson plans.

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Design a Course with Friction
Grades:
6th Grade, 7th Grade
In the second part of this lesson, students will now test how friction can change the speed of a RC car. Students will first test the RC car on three different surfaces of their choice and time them

Grades:
6th Grade, 7th Grade, 8th Grade
Calling all engineers, artists, scientists, and crafters! Our MAKER FAIRE is a venue for our “makers” to show off your talents, innovations, and creative solutions! Join the Maker Movement! Students

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Rocket Science
Grades:
3rd Grade, 4th Grade, 5th Grade
This engaging lesson is a great introduction for space exploration units. This plan goes over the history of rockets, how they work, and how modern rockets help us explore the solar system. There are