Grades:
6th Grade, 7th Grade, 8th Grade
In this meaningful lesson, students use creativity, imagination, and engineering skills to create a water conservation model that can be scaled up and used in a garden. Students are encouraged to
Grades:
3rd Grade, 4th Grade
This hands-on lesson is based on the book, "If I Built a House". Students use recyclables to create a 'dream' house which is based on their likes and interests. Using the Engineering Design Process as
Grades:
5th Grade, 6th Grade, 7th Grade, 8th Grade
Building on the programming concepts explored in part 1, this lesson asks students to re-imagine the ‘spiral-out’ program to be a spiral-in program instead. Designed to be a stepping-stone activity to
Grades:
3rd Grade
This lesson is the initial planning, sorting, and planting lesson to get Our Plot of Sunshine Curriculum started within a 3rd grade classroom. Can be modified for other grades, but math within this
Grades:
6th Grade, 7th Grade, 8th Grade
This is an 8-lesson unit that is designed to be used together to learn about the health and diversity of your local watershed by placing leaf packs into a water source (natural or man-made ponds
Grades:
5th Grade
Students will use the engineering design process to design, build, and test three different paper airplane designs. The goal will be to create one that can fly the fastest, one that can fly the
Grades:
6th Grade, 7th Grade, 8th Grade
In this hands-on lesson, students will consider what they think about several different closed systems. Then students will design and carry out investigations of living things to inform their closed
Grades:
3rd Grade
In this lesson, students will research a variety of habitats. They will then use their research to document what they learned using technology. This information will be used in future lessons to build
Grades:
5th Grade, 6th Grade
This is an introductory lesson designed for a robotics after-school session involving materials and equipment from VEX robotics and coding. Students explore robotics, discuss the tasks robots can
Grades:
5th Grade
In this engaging and hands-on lesson, students will learn how crime scene investigators use science and engineering techniques and technology to solve crimes. Students will match substances based upon
Grades:
9th Grade, 10th Grade
In this hands-on lesson, students work with a partner to construct a functioning, usable sprinkler. Students use basic principles of engineering to create this prototype and test it out for adequate
Grades:
4th Grade
Students will be able to design a method of protection for the Earth’s land that would withstand the impact of rainfall on soil and prevent erosion. Students will discover that the soil with
Grades:
6th Grade, 7th Grade, 8th Grade
This is a two-part lesson using pull back cars. Students will change the mass of their pull back cars to determine if the mass affects the distance they travel or their speed. This engaging lesson
Grades:
5th Grade
In this STEM lesson, 5th grade students will apply what they have learned about the affect gravity and friction have on an object’s mobility by engineering simple machines to change the ending of the
Grades:
6th Grade, 7th Grade, 8th Grade
In this engaging lesson, students will examine the surface of the Moon to consider hazardous conditions that NASA may find there. Then, they will investigate several hazards (dust, boulders, and
Grades:
6th Grade, 7th Grade, 8th Grade
This is an 8-lesson unit that is designed to be used together to learn about the health and diversity of your local watershed by placing leaf packs into a water source (natural or man-made ponds
Grades:
3rd Grade
In this lesson, students will create a unique animal and then describe & draw it in a specific habitat. The students will determine what adaptations the animal needs to survive in the habitat and
Grades:
6th Grade
This is the second part of the egg drop challenge. Students will improve on their original design and make a new design to test and analyze.
Grades:
6th Grade, 7th Grade, 8th Grade
This is an 8-lesson unit that is designed to be used together to learn about the health and diversity of your local watershed by placing leaf packs into a water source (natural or man-made ponds
Grades:
3rd Grade
SUMMARY: This lesson challenges 3rd grade students to apply their knowledge of the physics of light by having them design, create, and test an obstacle course that their beam of light must navigate
Grades:
6th Grade, 7th Grade, 8th Grade
This is an 8-lesson unit that is designed to be used together to learn about the health and diversity of your local watershed by placing leaf packs into a water source (natural or man-made ponds
Grades:
6th Grade, 7th Grade, 8th Grade
This is an 8-lesson unit that is designed to be used together to learn about the health and diversity of your local watershed by placing leaf packs into a water source (natural or man-made ponds
Grades:
5th Grade
In this lesson, students comprehend basic physics concepts that are applicable to constructing a device that protects an egg from breaking when dropped. Team building and self-reflection are key
Featured
My Very Own Game Controller
Grades:
4th Grade, 5th Grade, 6th Grade
In this engaging lesson, students will design a working game controller using cardboard, conductive materials, and a Makey Makey. The product will coincide with students' prior knowledge of closed
Featured Lesson Plans
Check out these notable lesson plans.

Featured
Shelter From the Sun
Grades:
Kindergarten
Kindergarten students explore earth materials to find out how the sun and other heat sources change their temperature. The students use what they learn in order to choose earth materials that would be

Featured
OMG! Empirical Formulas
Grades:
9th Grade, 10th Grade, 11th Grade, 12th Grade
Students will discover the Empirical Formula for the synthesis of Magnesium and Oxygen through a laboratory experiment in which they will react Magnesium Ribbon with atmospheric Oxygen by super

Grades:
6th Grade, 7th Grade, 8th Grade
In this lesson, students will explore the concepts of gear ratios and proportions. They will construct a working gear system and observe how the ratio between gears affects their motion. They will use