Grades:
10th Grade, 11th Grade, 12th Grade
This lesson involves students calculating the density of various objects of differing sizes of the same substance. Each student group will need a balance, a ruler, and/or a graduated cylinder. They
Grades:
8th Grade
Explore scientific notation by traveling through the universe. Students will try to place objects in the universe in order from smallest to largest by using pictures, names and numbers in scientific
Grades:
4th Grade, 5th Grade, 6th Grade
This lesson plan includes ideas and materials centered on Mark Kelly's book Mousetronaut. The students will be discussing gravity and listening to the book. They will then be participating in an
Grades:
5th Grade, 6th Grade
This hands-on lesson has students create a barometer using a jar, balloon, stir stick and tape. They collect data over a span of time and graph it to understand how a barometer works and how it
Grades:
8th Grade
In this lesson, students will explore how biomes differ in different parts of the globe. They will identify differences between biomes and collaborate with peers to gather environmental science data
Grades:
7th Grade
This engaging lesson is designed to simulate how scientists look for patterns in evidence to make claims, and back them up with reasoning. There are some important takeaways that students will make
Grades:
6th Grade, 7th Grade, 8th Grade
In this lesson, students will show how heat transfers into an egg during the hard-boiling process, and additionally, different methods of how heat can transfer out of an egg during the cooling process
Grades:
5th Grade
In this lesson, students will create a model of the solar system by shrinking the dimensions of the distances. Students will read an informational text about the features of the planets and view a
Grades:
8th Grade
In this lesson students analyze the relationship between rainfall and tree growth from a sample. They will then graphically model that relationship. This is the 4th lesson in a series of 4. Links to
Grades:
4th Grade
The students will work in groups to create a model of a roof that is able to survive a hurricane-like wind. Students learn about disaster preparedness, use the engineering design process to guide the
Grades:
5th Grade
This lesson has an emphasis on explaining what is force. It also has an emphasis on explaining how you can see and measure force. For this lesson you need several empty plastic bottles, rubber bands
Grades:
8th Grade
Using rock salt, ice, juice, and thermometers, students will use their inquiry framework to investigate how slushies are made and see if they are able to replicate the results of a traditional slushy
Grades:
9th Grade, 10th Grade
This lesson plan focuses around 4 key topics, with activities for each. The plan covers renewable energy, solar energy, why solar energy is important, and what the children can do to conserve energy
Grades:
4th Grade, 5th Grade
In this hands-on lesson, students will explore how speed is calculated, what inertia is and apply it to Newton’s Laws of Motion. They use the engineering design process to construct race cars out of
Grades:
6th Grade
A mixture of 5E lessons on Nearpod and an accompanying hands-on activity to help students see that gravity works at a distance and is affected by mass. Students will be writing a conclusion based on
Grades:
10th Grade
The lesson plan is about energy transfer in an ecosystem using beads. Students will participate in an interactive simulation about energy transfer. They will collect data and ultimately create a class
Grades:
9th Grade, 10th Grade, 11th Grade, 12th Grade
This lesson uses a Modeling Instruction approach to developing the graphical and mathematical relationships for Circular Motion for students in Grades 9-12. Students design an experiment, collect data
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Tide Pools Ecosystem: Human Impact
Grades:
6th Grade
This lesson plan includes ideas and materials to last for 5 days. The students will be learning about human impact on tide pools and engineering their own solution. On the first day will be about
Grades:
4th Grade, 5th Grade
In this hands-on lesson, students design a safety device (car/seatbelt) that can keep an egg (passenger) safe during a collision. The goal is to protect the egg from cracking during a roll down a ramp
Grades:
1st Grade
What is the life cycle of a butterfly? How do butterflies use their wings? Answers to these questions and more are in this engaging lesson. The challenge for the students is to create a butterfly
Grades:
1st Grade
In this hands-on lesson, students will listen to "The Water Princess" by Susan Verde and then create their own water filtration system in a small group. Students will consider questions like, "How can
Grades:
4th Grade
In this STEM Challenge, the student’s task is to build a car that is powered only by the force (push or pull) of a pair of magnets. Students experience push and pull first-hand as they construct their
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
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
Featured Lesson Plans
Check out these notable lesson plans.

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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

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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