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Lesson Plan Grade: 4th
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3 reviews
Why is it important to eat healthy and exercise? In this hands-on lesson plan, students will build a simple model to explore the effects of plaque buildup in arteries. The model allows them to demonstrate what happens to blood flow when heart disease narrows a person's arteries. Read more
NGSS Performance Expectations:
  • 4-LS1-1. Construct an argument that plants and animals have internal and external structures that function to support survival, growth, behavior, and reproduction.
Lesson Plan Grade: 6th-8th
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Why is the ocean vital to our planet? There are many reasons, but one important one is that the ocean is a major player in regulating our weather and climate through currents. In this lesson plan, your students will model ocean currents with cups, water, and food coloring, and explore how temperature and density differences set deep ocean waters in motion to create a global oceanic circulation system. Read more
NGSS Performance Expectations:
  • MS-ESS2-6. Develop and use a model to describe how unequal heating and rotation of the Earth cause patterns of atmospheric and oceanic circulation that determine regional climates.
Lesson Plan Grade: 3rd-5th
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Do your students have their own online accounts like email or social media? What about a login for the school computers? If so, they might have to pick passwords. Have you ever had trouble creating (and forgetting) good passwords? This fun lesson plan involves a guessing game that can teach your students how to make their passwords harder to guess. Learn how to keep your accounts safe! Read more
Lesson Plan Grade: 6th-8th
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Learn about potential and kinetic energy the fun way—by launching ping pong balls across the classroom with a catapult! Read more
NGSS Performance Expectations:
  • MS-PS3-5. Construct, use, and present arguments to support the claim that when the kinetic energy of an object changes, energy is transferred to or from the object.
Lesson Plan Grade: 3rd-5th
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15 reviews
In this fun engineering lesson plan, your students will build devices from paper, tape, string, and paper clips to pick up and retrieve a ping pong ball. The challenge is to pick up the ball from as far away as possible! Middle school and high school versions of this lesson plan are also available. The 2023 competition is over, but you can see what students built and learn about the winners on the 2023 Engineering Challenge summary page. Read more
NGSS Performance Expectations:
  • 3-5-ETS1-2. Generate and compare multiple possible solutions to a problem based on how well each is likely to meet the criteria and constraints of the problem.
Lesson Plan Grade: 9th-12th
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8 reviews
In this fun engineering lesson plan, your students will build devices from paper, tape, string, and paper clips to pick up and retrieve a ping pong ball. The challenge is to pick up the ball from as far away as possible! Elementary school and middle school versions of this lesson plan are also available. The 2023 competition is over, but you can see what students built and learn about the winners on the 2023 Engineering Challenge summary page. Read more
NGSS Performance Expectations:
  • High School - Science & Engineering Practices
Lesson Plan Grade: 6th-8th
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7 reviews
In this small group activity, students will build a plant seed (burr) from a Styrofoam® ball and other crafts materials. The seed needs to be designed in a way that it can be dispersed by attaching to a mockup animal (wool glove). Students will first test if their seed attaches to the wool glove and then carry their attached seed along an obstacle course inside the classroom. As students design their plant seed and mimic its dispersal via an animal, they will realize how some plants grow… Read more
NGSS Performance Expectations:
  • MS-LS1-4. Use argument based on empirical evidence and scientific reasoning to support an explanation for how characteristic animal behaviors and specialized plant structures affect the probability of successful reproduction of animals and plants respectively.
  • MS-ETS1-2. Evaluate competing design solutions using a systematic process to determine how well they meet the criteria and constraints of the problem.
Lesson Plan Grade: 3rd-8th
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4 reviews
> "Solar System" © 2005 NASA-JPL How much space is in space? Students build a simple model and practice fractions to see how much space exists between different objects in our solar system. Read more
Lesson Plan Grade: 9th-12th
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Students become biomedical engineers and create model viruses for use in therapeutic applications, such as gene therapy. In constructing their models, students carefully plan for side effects and modify a virus that can be used to safely to deliver gene therapy. This process involves taking a "wild type" (or unmodified) virus so it can target a specific area of the body.Engineering Connection Genetic engineering is the artificial manipulation, modification, and… Read more
NGSS Performance Expectations:
  • HS-ETS1-2. Design a solution to a complex real-world problem by breaking it down into smaller, more manageable problems that can be solved through engineering.
Lesson Plan Grade: 6th-8th
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Sea level rise and more-intense storms, both driven by climate change, threaten coastal communities around the globe. In this engineering project, your students will build a model coastline and design a seawall to protect houses from waves as the sea level rises. Remote learning adaptation: This lesson plan can be conducted remotely. Materials can be distributed for each student to work independently at home on the challenge and report back. Alternatively, students can design a barrier (draw… Read more
NGSS Performance Expectations:
  • MS-ESS3-2. Analyze and interpret data on natural hazards to forecast future catastrophic events and inform the development of technologies to mitigate their effects.
  • MS-ETS1-1. Define the criteria and constraints of a design problem with sufficient precision to ensure a successful solution, taking into account relevant scientific principles and potential impacts on people and the natural environment that may limit possible solutions.
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