Grades:
8th Grade
This engaging lesson is all about reverse engineering! Students will read and discuss the hook “A.I. Apocalypse”. They learn all about reverse engineering during this project as they determine a
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 unit, students will study the effects of atmospheric pressure and air resistance on objects to engineer a landing apparatus to land cargo in space. They will then write a Claim based on
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
In this lesson, students will identify the significance mean, median, and mode while collecting data and making observations about a collection of items in their home. Making these connections will
Grades:
5th Grade
This is the second lesson in the series of lessons comparing how garden growing techniques determine plant growth/production. In this lesson, students will research the best types of plants to grow
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
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
Featured
Mosquito Management
Grades:
3rd Grade, 4th Grade, 5th Grade
This lesson takes place in as classroom for one or more 60 minute class periods. The data collection portion may continue for 2+ weeks (or whatever time frame you decide). An emphasis is placed on the
Grades:
7th Grade
Students create a video-tutorial that talks about Direct and Inverse Variation in this creative lesson. This material will showcase their full understanding about the type of variation they have
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:
5th Grade
Students will germinate seeds and record any observations during the process.
Grades:
6th Grade
In this lesson, students will create and test multiple helicopters to create a helicopter that lands the slowest in a given target. Students will take their best design and share with the class.
Grades:
6th Grade, 7th Grade, 8th Grade, 9th Grade
Students will create Rube Goldberg machines from simple machines in this engaging lesson. The teacher can determine materials such as wooden planks, paper towel rolls, bottle caps, marbles, cardboard
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:
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:
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:
6th Grade
In this lesson, students will calculate the surface area of rectangular prism, first constructed and then deconstructed and make observations about any potential differences. Making these connections
Grades:
4th Grade
Students will engage in an activity that helps us understand the effect of fracking on the environment by digging for oil (chocolate chips) from their mining site (cookie). Agenda: Fracking pictures
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:
4th Grade, 5th Grade
This lesson teaches students about lines, angles, measuring and naming angles, using a protractor, and engages students by having them build a catapult and measure best angle for furthest launch.
Grades:
2nd Grade
Students will design and build the tallest tower/structure using candy/marshmallows and toothpicks.
Grades:
5th Grade
Summary: Today we will observe and test five known mystery powders, identify examples of physical and chemical reactions to determine who committed the crime. Materials: 6 teaspoons or small spoons
Grades:
4th Grade
In this lesson, students will develop and use the model of a simple circuit to explain how energy is moved through electric currents. The current and voltage in circuits with 1 dry cell and 2 dry
Featured Lesson Plans
Check out these notable lesson plans.

Featured
A Shocking Dystopia: STEM Adventures in The City of Ember Part 2 of 4: A Way to See in the Dark
Grades:
4th Grade
This lesson is PART 2 of a four-lesson unit, which focuses on futures thinking, the phenomenon of electricity, closed-system agriculture, and water as a renewable energy resource. “The City of Ember”

Featured
A Shocking Dystopia: STEM Adventures in The City of Ember Part 1 of 4: Blackout! Community Circuits
Grades:
4th Grade
This lesson is PART 1 of a four-lesson unit, which focuses on futures thinking, the phenomenon of electricity, closed-system agriculture, and water as a renewable energy resource. “The City of Ember”

Grades:
6th Grade, 7th Grade, 8th Grade
Students will be able to collaboratively build, and program a simple robot using Lego Spike Prime kits. Students will demonstrate basic skills in robotics and coding by successfully constructing their