Using the engineering design process, students will identify a structural or spatial problem on their school campus and then plan, design, evaluate and redesign a structural and spatial solution while
In this lesson, students use the Kepler’s Laws PhET Simulation to collect data on the period and average radius of the planetary orbits. They graph and analyze that data to derive Kepler’s 3rd Law.
A Shocking Dystopia: STEM Adventures in The City of Ember Part 4 of 4: Where the River Goes
This lesson is PART 4 of a four-lesson unit, which focuses on futures thinking, the phenomenon of electricity, closed-system agriculture, and water as a renewable energy resource. “The City of Ember”
A Shocking Dystopia: STEM Adventures in The City of Ember Part 3 of 4: A Problem in the Greenhouse
This lesson is PART 3 of a four-lesson unit, which focuses on futures thinking, the phenomenon of electricity, closed-system agriculture, and water as a renewable energy resource. “The City of Ember”
A Shocking Dystopia: STEM Adventures in The City of Ember Part 2 of 4: A Way to See in the Dark
This lesson is PART 2 of a four-lesson unit, which focuses on futures thinking, the phenomenon of electricity, closed-system agriculture, and water as a renewable energy resource. “The City of Ember”
A Shocking Dystopia: STEM Adventures in The City of Ember Part 1 of 4: Blackout! Community Circuits
This lesson is PART 1 of a four-lesson unit, which focuses on futures thinking, the phenomenon of electricity, closed-system agriculture, and water as a renewable energy resource. “The City of Ember”
Students will use the Sphero bots to collect and graph data to make a prediction.
Students will be using simple equipment to demonstrate the 3 laws of motion. They will be incorporating technology, math, and the scientific method to demonstrate what they know.
Students will be able to collaboratively build, and program a simple robot using Lego Spike Prime kits. Students will demonstrate basic skills in robotics and coding by successfully constructing their
How old is Earth? How big is 1 million years compared to 1 billion years? Students will use three models to organize geologic time and practice cross multiplication to solve for a variable.
This lesson gives students another real life example of Newton's Second Law of Motion. Students will use force diagrams and Newton's Second Law of Motion to find their apparent weight as they
Students will build a paper marble run out of recycled paper which maximizes the time of travel. Students will then analyze the run with energy diagrams and determine how much energy was lost.
This is an introductory activity to reaction kinetics at an AP Chemistry level. Students use model kits or Legos in an activity that allows them to model how changing the concentration of reactants in
Students will go through the process of counting pumpkin seeds and analyzing data through mean, median and mode as well as creating correlating graphs. Students will learn what causes fruit
Students will have fun building and testing with KidSpark observing and calculating forces such as load and effort.
In the 5th-grade Paper Plane Aerodynamics lesson, students embark on an exciting journey into the world of flight. Through hands-on activities, they explore the fundamental principles of aerodynamics
This interactive 4th-grade lesson plan focuses on erosion and weathering, key concepts in understanding Earth's geology. In "Dynamic Earth," students use an interactive simulation to explore how
This lesson is an activity to show how projectile motion and many other motions in nature fallow a parabolic curve. Students will manipulate that knowledge and analyze data using small play tanks to
This lesson incorporates Math, Science and Reading standards into a pumpkin themed third grade lesson. Students will use a mentor text to relate to the life cycle of a pumpkin, create, compare and
Pumpkin Jack Part One
This lesson includes fourth grade reading, writing, math, science, and engineering standards. The potential is endless with additional enrichment activities. Students participate in the nurturing and
Get ready to learn about density! This is a density lab involving hot and cold-water layering, salt density layers, and a PHET online lab simulation.
Students will use the engineering design process to complete 3 challenges. Each challenge gathers data and collects their engineering changes necessary to complete the challenge.
Engage students with competitive activities. Students will be predicting measurements, collecting data, and determining the difference between the estimation and the actual. Students will create la
Students will be divided into 6 groups, one for each of the major systems in the human body, and create a presentation to share with the rest of the class.
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