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Lesson Plan Grade: 6th-8th
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6 reviews
Combine Newton's third law of motion with engineering design in one fun lesson! Your students will learn about equal and opposite reaction forces as they design and build a bumper to protect a toy car during a crash. Read more
NGSS Performance Expectations:
  • MS-PS2-1. Apply Newton's Third Law to design a solution to a problem involving the motion of two colliding objects.
  • MS-ETS1-4. Develop a model to generate data for iterative testing and modification of a proposed object, tool, or process such that an optimal design can be achieved.
Video Lesson Grade: 3rd-5th
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2 reviews
In this fun video lesson, students will pretend to be engineers at an engineering company that constructs paper airplanes. They will identify the criteria for success from provided readings and define the constraints on their solutions. Using the engineering design process they will prototype, test, and deliver their best paper airplanes. Read more
NGSS Performance Expectations:
  • 3-5-ETS1-1. Define a simple design problem reflecting a need or a want that includes specified criteria for success and constraints on materials, time, or cost.
Lesson Plan Grade: 6th-12th
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10 reviews
This lesson plan will introduce your students to physical computing: the process of building circuits and programming a microcontroller (an Arduino UNO®) to interact with them. The lesson is broken into seven activities that will walk your students through the basics of setting up the Arduino and interacting with circuit parts like LEDs, buttons, and resistors. This introductory material will help prepare your students for more advanced Arduino projects. Read more
Lesson Plan Grade: 6th-8th
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6 reviews
This hands-on science lesson will help your students get a more accurate view of the solar system by making a scale model. They will do the calculations, make model planets, and find out where to place them so their model reflects reality. Seeing the relative size of the eight planets and their distance from the Sun displayed before them will allow your students to grasp the structure and vastness of the solar system. Read more
NGSS Performance Expectations:
  • MS-ESS1-3. Analyze and interpret data to determine scale properties of objects in the solar system.
Lesson Plan Grade: Kindergarten
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13 reviews
Your kindergarten students are used to moving objects. They throw balls, play with toy cars, and sweep the floor, but how much do they think about these actions? In this fun, hands-on lesson, you will use a game (rolling balls) to explore how pushing and pulling affects an object's motion. This lesson can be expanded with a second lesson exploring how objects can push each other, and how weight influences motion. Read more
NGSS Performance Expectations:
  • K-PS2-1. Plan and conduct an investigation to compare the effects of different strengths or different directions of pushes and pulls on the motion of an object.
Lesson Plan Grade: 3rd
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7 reviews
Forces, which we might instinctively describe as pushes and pulls, are acting on us at all times, but we cannot always see them. This hands-on lesson offers a fun opportunity to explore "invisible" forces like gravity and air resistance. Students will build parachutes and investigate how they allow skydivers to safely land. Read more
NGSS Performance Expectations:
  • 3-PS2-1. Plan and conduct an investigation to provide evidence of the effects of balanced and unbalanced forces on the motion of an object.
Lesson Plan Grade: 1st
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24 reviews
Young students know that they can hear sounds, but do they know what causes sounds? In this lesson they will learn that sounds are caused by vibrations, and they will build a fun musical instrument of their own. In the Sound and Vibrations 2: Make Sprinkles Dance, students will learn that sounds can also cause vibrations. Read more
NGSS Performance Expectations:
  • 1-PS4-1. Plan and conduct investigations to provide evidence that vibrating materials can make sound and that sound can make materials vibrate.
Lesson Plan Grade: 6th-8th
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2 reviews
Rube Goldberg machines—machines that complete a simple task in a convoluted way—are intriguing, artistic, and fun! In this lesson, students will design and build such a machine themselves and use the concept of kinetic energy in the process. Before students start designing, they will do an experiment that explores how kinetic energy depends on the mass and the speed of the moving object. With a clear understanding of this concept, students then tackle the engineering design… Read more
NGSS Performance Expectations:
  • MS-PS3-1. Construct and interpret graphical displays of data to describe the relationships of kinetic energy to the mass of an object and to the speed of an object.
  • 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.
Lesson Plan Grade: 9th-12th
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11 reviews
This lab discusses types of reactions and replaces traditional reaction experiments involving chemicals such as lead (II) nitrate, barium chloride, and silver nitrate with greener alternatives. This lab is designed to challenge students to identify types of chemical reactions and distinguish between those that use safer, less hazardous chemicals and those that are more dangerous. Students will make a choice as to which reaction they will perform using the 12 Principles of Green Chemistry. They… Read more
Lesson Plan Grade: Kindergarten
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32 reviews
At some point, many children wish for a pet animal to play with and care for. But what does it take to keep an animal alive and healthy? In this engaging lesson plan, children will act out adopting a pet and shopping for items based on its needs. As they bring their items together, they will notice that every animal needs food, water, shelter, and air to survive. Read more
NGSS Performance Expectations:
  • K-LS1-1. Use observations to describe patterns of what plants and animals (including humans) need to survive.
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