In this hands-on and engaging lesson, students build and launch model rockets. They explore the forces acting on the rocket and design an experiment They predict the time to apogee based on
In this lesson, students will design and create a model of a moon lander that can land smoothly on the surface of the moon. Students will learn about the mission to the moon and how engineers designed
Around two thousand years ago, weighing an elephant without advanced equipment posed a challenging problem. However, a clever solution was devised by a seven-year-old named Cao Cong. He ingeniously
In this set of hands-on labs, students will explore friction and the effects of different types of surfaces on motion. They will have a chance to test motion with cars as well as create hover board
In this lesson, students will use the story of "The Three Little Superpigs and the Gingerbread Man" as the context to complete a hands-on STEM activity where they are responsible for building a trap
In this engaging lesson, students will construct a small experiment demonstrating the relationship of momentum with mass, and velocity, then record that data. Students will take the data and create a
More VR integration in the classroom, oh my! This is the second lesson of a two-day exploration of chain reactions. On day one, students received a general overview of chain reactions, Rube Goldberg
VR in the classroom, oh my! This Day 1 lesson provides students an introductory understanding of chain reactions, Rube Goldberg and his machines, the Oculus (Meta) Quest 2, the online game Dynamic
In this outstanding lesson, teachers facilitate students to design and build Meet Edison Robots for Cougar Clash “BattleBot” robot battle classroom tournament. (We named ours Cougar Clash as your
This is the 2nd lesson is a 2-part series. Students will expand their knowledge of Newton's laws while building, launching and changing the design of paper rockets. This design and modeling exercise
Students will expand their knowledge of Newton's laws while building, launching and changing the design of paper rockets. This design and modeling exercise by JPL/NASA starts students off with a
In this creative lesson, students focus on inertia while exploring the magnetic compass and its errors while flying an aircraft.
Students will redesign the front face of the school, to improve the curb appeal. Students will identify space by using math equations to properly create a plan for school makeover. Students will use
In this hands-on lesson, students will demonstrate their understanding of robotics and coding by creating a course for their robot to move on. The course will include turns, circles and straight ways.
In this hands-on lesson, students explore unbalanced forces through a variety of learning experiences and reading material. They then create simple machines to demonstrate unbalanced forces.
Today we will engineer air powered rockets. To do this we will: Watch a video and note the shape of rockets and learn about countdown and liftoff Name shapes as we brainstorm and sketch plans Build
In this hands-on lesson, students learn about the discipline of structural engineering by using the engineering design process to create a load-bearing structure. The purpose of this lesson is to
This STEM project allowed students to embark on an exciting journey of entrepreneurship with "Ride to Success." In this immersive STEM lesson plan, students will not only learn the ins and outs of
In this hands-on lesson, students explore force and motion. They will plan the construction of a slide for a marble that will show how the unbalanced force of gravity will act on the marble in order
In this lesson students model the process of speciation using Skittles. As they work through the story, students see how changing geography can change the traits in a species and how over time these
In this engaging lesson, students complete 2 labs to investigate and analyze how the force of gravity impacts objects. The lesson is formatted for Argument Driven Inquiry design, which means it starts
In this engaging lesson, students will model a standing transverse wave using a slinky and collect measurements to find the amplitude, wavelength, and frequency of their wave in order to calculate the
In this hands-on lesson, students will model transfer of kinetic energy by preparing and measuring the temperature of two equal quantities of water, before mixing them together and then measuring the
In this hands-on lesson, students will plan, build and create a roller coaster from random materials that a Ping Pong ball can travel through. Students engage in the engineering design process as they
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