The lesson is designed for use as part of a unit on energy transfer within a system. Before doing this lesson, students should have a basic understanding of potential and kinetic energy. Students will
Students examine the relationship between a ball's bounce height and its drop height to see a linear relationship. They then calculate the slope of their data to compare "bounciness" with other groups
Context: This lesson takes place in a classroom for two or more class periods Students may work in small groups of 2-4. An emphasis on the experiment of making an indestructible Edison robot Creative
Students will create an inclined plane using Pythagorean Theorem and will experiment with rolling objects and try to find a solution to reduce the speed through friction, or air resistance or weight.
Students will first build and collect data on how fast their solar car is. Then students can change items to increase the efficiency of the solar panel to increase the overall speed of the solar car.
Students will increase efficiency of the solar panels by using angles. Students are given a solar panel, protractor, and a multimeter. They need to complete a pre- investigation plane before they
Students will be reading an article and answering questions on Solar Panels to help them complete their model of how the solar panel converts the sun's energy into electricity,.
It is a lesson that is based on Mathematical computation and Project based learning. Students have to find the proportional relationship between the surface area of the house and the paint to be used
Introduction to how a solar panel works. Students get to explore how to power a fan and lights using a solar panel and a motor. Students get to see a diagram of a solar panel and start to make a model
This lesson helps kids have an understanding of how our eyes capture light. A camera captures pictures of objects using a similar way so in this experiment, kids will be making a camera using simple
In this lesson, students will build on what they understand about heat/energy transfer to research, design, and construct solar cookers.
Students will investigate how a simple circuit works through the use of Squishy Circuits. This is part 2 of a 3 part unit but can also be done as a stand alone activity. Students will draw and label
This is the planning and set-up stage for an experiment to see which type of gardening is the most sustainable and produces the best results. You will need to either choose or have students help
Students are challenged with making a simple hoop glider and then altering it to achieve the greatest possible distance before being given the opportunity to change hoop materials and achieve the
In this lesson students will use the Engineering Design Process to build a zipline carrier that will take their passenger down the zipline in a given time period, adjusting and altering their design
The students design and test a catapult using simple materials like popsicle sticks and rubber bands. They learn about the history of catapults and also about the physical science concepts related to
Rad Roller Coasters Part 2 comes at the end of our paper roller coaster project. Students will collect data on their coaster and use that to calculate velocity, potential energy and kinetic energy
In the final part of A Light in the Dark (pt. 3 of 3), students create their solution to the problem based on their chosen theme. Students present their final solutions to be evaluated.
In this continuation of A Light in the Dark (pt. 2 of 3), students research their questions and consolidate their learning, then determine their next steps in the process to solve the problem.
This lesson introduces the unit exploring light pollution and possible solutions students can create. Students will explore what light pollution is. Students will determine next steps in the process.
This lesson intends to expand the student's knowledge of electricity through an exciting hands-on experiment. "The Amazing Power of Fruits allows the students to collaborate as a team and demonstrate
In this lesson, teams of 3-4 students will design and create scale models of four landforms that they chose. This lesson takes place in a classroom for 60 minutes, with an emphasis on the target
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