Animal Adaptations: Lesson 6
This is lesson 6 of the Life Science Unit. Students engage in various learning opportunities. #1 Objective: I can count and graph camouflage animals. #2 Objective: I can camouflage a butterfly. #3
Animal Life Cycles: Lesson 5
This is lesson 5 of the Life Science Unit. Students describe the life cycle of a chosen animal through photography or stop animation. This engaging lesson includes optional fiction read-alouds
This is lesson 4 of the Life Science Unit. Students will evaluate and identify how the features of a young animal offspring and parent are similar (not identical) and different. They will code the
Animal Habitats: Lesson 3
This is lesson 3 of the Life Science Unit. Students design a habitat for an organism using earth material. Links to all lessons and optional fiction read-alouds, picture sorts, STEM hands-on
Animal Classification: Lesson 2
This is lesson 2 of the Life Science Unit. Students learn about animal classifications. Links to all lessons and optional fiction read-alouds, picture sorts, STEM hands-on activities, journal prompts
Animals and Resources: Lesson 1
This is lesson 1 of the Life Science Unit. Links to all lessons included! In this lesson, students engineer a bird feeder to help birds access resources to survive. Optional fiction read-alouds
In this hands-on lesson, students will have a teacher read aloud: "Rosie Revere, Engineer" and discuss the importance of perseverance and imagination while creating, building, and testing. They will
This lesson is part of a project to isolate bacteria from soil and test it for antibiotic activity. This lesson must follow Microbial Serial Dilutions. You can also use this lesson to screen for
Students will explore the field of astrobiology and the possibility of life on Mars through research, critical thinking, and hands-on activities. Students will design and create a model Martian
During this lesson students will explore the concept of erosion. Using a Stream Table, students will have the opportunity to discuss theroies with their classmates, observe erosion, draw a model and
Students will become a DESIGN TEAM. The team will be using the 4 C’s and the steps of the Design Process to produce an item for a chosen client. Students will focus on empathy to decide on components
In this lesson students use a picture book to look for cause and effect relationships between biotic and abiotic factors in an ecosystems using systems thinking strategies. Students create a
In this hands-on lesson, students will use robotics to create an automated system that simulates the cleanup of a natural disaster. In this case, a nuclear reactor explosion. Students will program
In this hands-on lesson, students are challenged to build shelter. They will learn that everyone needs shelter. Students will learn what materials might make the best shelter. Students will test
This lesson allows students to explore the Law of Conservation of Mass through a balloon lab activity using baking soda and vinegar. Students will be able to develop a model to describe their findings
This lesson provides opportunity to our students to apply their knowledge in solving real world problems. The students will create a new design for a cereal box using math, art and design. They also
This is a multiple-day lesson plan based on Newton's 3 Laws of Motion. Students begin the lesson by collecting data observing coins moving across a table. After making the observations, students will
How can we design and engineer sports venues of the future that practice sustainability? According to the Green Sports Alliance, 17% of the world's population follows science but about 80% follow
This is lesson can be used alone to introduce the engineering design process. This lesson is 1 of 2 in an Engineering and Sustainable Design Unit focused on sustainability and sports. Students learn
This engaging lesson is the 2nd lesson in a series of 2 focused on data science inquiry. Students use their My Data Portraits from Lesson 1 for data collection, analysis, presentation, reflection and
Love it, kind of like it, kind of don’t like it, or don’t like it at all are typical responses to many things…depending on what we are being asked! During this investigation, we explore together, how
This lesson expands upon ASU's Ask a Biologist "Monster Manual" Activity to include CAD (Computer-Aided Design). Students learn about DNA and how we inherit traits through an analogy of decoding a
This hands-on lesson allows students to investigate how the length of a piece of string affects the speed and centripetal force on an object moving in a circular path at a constant speed and use
In this hands-on lesson, students build small-scale wind-powered cars. They construct an understanding that energy is transferred from the wind to the sail car. Students explain how they used