Grades:
7th Grade
This is Task 3 (Lesson 3) of four tasks (lessons) of an overall project entitled “Escaping 7th Grade Science Room”. Students will construct a 3D model of both an animal cell and human cell. They will
Grades:
3rd Grade
Students will describe the role of pollinators and explain their effects. They will be able to identify how the life cycle of a plant and a pollinator are connected. Students will also get to explore
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Introduction to Vermicomposting
Grades:
Kindergarten, 1st Grade, 2nd Grade, 3rd Grade, 4th Grade, 5th Grade
The objective of this lesson is to introduce students to vermicomposting by explaining what it is and getting our bins set up. Students learn about recycling, share a read aloud, watch a video and
Grades:
5th Grade
In this hands-on lesson, students will work together to build a system where energy is transferred between objects for as long as possible (i.e. Newton’s Cradle). Students continue the work that began
Grades:
8th Grade
Students will measure the height, diameter, and circumference of a tree in this engaging lesson. They will then determine a tree’s age by counting growth rings. Students will determine how rainfall
Grades:
3rd Grade
Summary: This lesson is geared towards 3rd graders but can be modified for upper and lower grades. Throughout the next 4 lessons they will describe the role of pollinators and explain their effects
Grades:
8th Grade
In this lesson students will gather data about local tree diameters. They will then estimate the approximate age of trees. Students build connections between a tree’s growth and environmental factors
Grades:
4th Grade, 5th Grade, 6th Grade, 7th Grade, 8th Grade
In this hands-on lesson, students learn how to get their drone into the air. It covers hovering, yaw, roll, and pitch. Before the students launch their drones, there is a discussion about preparing
Grades:
10th Grade
This lesson involves three scenarios where you calculate the frequencies of the dominant and recessive alleles. You will compare these frequencies for the 3 scenarios and discuss how they changed
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:
Kindergarten
In this engaging lesson, students will participate in an engineering challenge or STEM activity that connects to a read aloud. Students will communicate solutions that will reduce the impact of humans
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Salt Lamps and Plants
Grades:
7th Grade, 8th Grade
Students in this lesson will set up an investigation to see if a salt lamp affects plant growth. They will use what they know about photosynthesis and cellular respiration to make sure the plants have
Grades:
9th Grade, 10th Grade, 11th Grade
In this lesson, students will be introduced to the concept of homeostasis with online research and then investigate how feedback mechanisms are used to maintain homeostasis during exercise during an
Grades:
5th Grade
This is part one of a design challenge where students are asked to brainstorm a device that allows energy to be transferred for as long as possible, similar to a Newton's Cradle. Students use the
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
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Messin' with Mixtures
Grades:
6th Grade, 7th Grade, 8th Grade
In this lesson, students will investigate the properties of a mixture, as if it were a contaminated soil sample near a stream. This activity will show students that heterogeneous mixtures can be
Grades:
6th Grade
In this lesson, students will collaborate to design and engineer a product to contain and clean up an oil spill while saving the affected wildlife. They will also accurately complete an itemized
Grades:
7th Grade
Students use their knowledge about cells and their organelles to create a dichotomous key to help guide others' thinking to decide if a cell is a plant cell or animal cell. Students need access to
Grades:
4th Grade, 5th Grade, 6th Grade, 7th Grade, 8th Grade
This is the first lesson in a series of 4. Students gain an understanding of the forces that are acting upon a drone when it is flying. They will learn about how thrust, weight, lift and drag work
Grades:
4th Grade, 5th Grade
In this lesson, students will be creating and publishing a picture book describing the journey of a seed to becoming a plant. Students describe the journey of the seed through its own eyes by
Grades:
5th Grade
Students are actively engaged in this creative lesson where they use their genetics knowledge to construct a game for others to play! They will use a Punnett Square and other genetic terminology as
Grades:
6th Grade
To demonstrate their understanding of how energy is passed throughout an ecosystem and the symbiotic relationships of organisms within an ecosystem, students construct a food web marble run. This
Grades:
4th Grade, 5th Grade
Students will be working with creating series and parallel circuits. Students will gain an understanding of the components used to create circuits and how circuits function in our everyday lives.
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
Featured Lesson Plans
Check out these notable lesson plans.

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Animal Classification: Lesson 2
Grades:
1st Grade
This is lesson 2 of the Life Science Unit. Students learn about animal classifications. Links to all lessons and optional fiction read-alouds, picture sorts, STEM hands-on activities, journal prompts

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Animals and Resources: Lesson 1
Grades:
1st Grade
This is lesson 1 of the Life Science Unit. Links to all lessons included! In this lesson, students engineer a bird feeder to help birds access resources to survive. Optional fiction read-alouds

Grades:
6th Grade
In this lesson students use a picture book to look for cause and effect relationships between biotic and abiotic factors in an ecosystems using systems thinking strategies. Students create a