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Lesson Plan Grade: 4th-12th
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Students will explore the elements by designing a wind maze, a device that can direct the wind along a specific path. Learning Objectives Students will: Design and test a wind maze. Consider how to direct the wind down an intended path by creating bends in the maze. Use observations from their tests to compare solutions and iterate on their designs. NGSS Alignment This lesson helps students prepare for these Next Generation Science Standards Performance Expectations: … Read more
Lesson Plan Grade: 9th-12th
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Students investigate passive solar building design with a focus solely on heating. They learn how insulation, window placement, thermal mass, surface colors, and site orientation play important roles in passive solar heating. They use this information to design and build their own model houses, and test them for thermal gains and losses during a simulated day and night. Teams compare designs and make suggestions for improvements.Engineering Connection Passive solar heating… Read more
NGSS Performance Expectations:
  • HS-ETS1-2. Design a solution to a complex real-world problem by breaking it down into smaller, more manageable problems that can be solved through engineering.
  • HS-ETS1-3. Evaluate a solution to a complex real-world problem based on prioritized criteria and trade-offs that account for a range of constraints, including cost, safety, reliability, and aesthetics, as well as possible social, cultural, and environmental impacts.
Lesson Plan Grade: 6th-8th
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These lessons use open-ended exploration to introduce students to biopolymers and the chemistry behind cross-linking. Students will draw inspiration from biology and use authentic scientific practices to design and create colorful string creations from a natural polymer, alginate. Learning Objectives Students will: Engage in authentic science practices through open-ended exploration. Create a string using polymers harvested from living algae. Manipulate the properties of a… Read more
Lesson Plan Grade: 6th-8th
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Using the context of apples, students will apply their knowledge of heredity and genetics to distinguish between sexual and asexual reproduction as they explain how new varieties of apples are developed and then propagated to meet consumer demand for a tasty, uniform, consistent product. Read more
NGSS Performance Expectations:
  • MS-LS4-4. Construct an explanation based on evidence that describes how genetic variations of traits in a population increase some individuals' probability of surviving and reproducing in a specific environment.
  • MS-LS4-5. Gather and synthesize information about technologies that have changed the way humans influence the inheritance of desired traits in organisms.
Lesson Plan Grade: 3rd-5th
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7 reviews
Students will explore heredity concepts by comparing observable traits of apples and onions, collecting data on the traits of different apple varieties, and learning about apple production. Additional activities include hands-on methods for testing apple ripeness. Read more
NGSS Performance Expectations:
  • 3-LS3-1. Analyze and interpret data to provide evidence that plants and animals have traits inherited from parents and that variation of these traits exists in a group of similar organisms.
Lesson Plan Grade: 6th-8th
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9 reviews
How do plants know which way is up or down? How does this affect which direction their roots will grow? In this lesson plan, your students will investigate how changes in a plant's environment, like the direction of gravity, affect the shape of its growing roots over a period of several days. Read more
NGSS Performance Expectations:
  • MS-LS1-5. Construct a scientific explanation based on evidence for how environmental and genetic factors influence the growth of organisms.
Lesson Plan Grade: 6th-8th
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How does light interact with matter? In this fun hands-on lesson, your students explore how different materials transmit, absorb and/or reflect light. They create their own experiments to demonstrate these phenomena and use a phones' built-in light sensor and a sensor app to add quantitative data to their arguments. Read more
NGSS Performance Expectations:
  • MS-PS4-2. Develop and use a model to describe that waves are reflected, absorbed, or transmitted through various materials.
Lesson Plan Grade: 8th-12th
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In this STEM lesson, students will build a mini popsicle stick drone and use feedback control with an Arduino and an ultrasonic sensor to control the drone's altitude. Read more
Lesson Plan Grade: 8th-12th
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This eight-part lesson will guide you through building and programming Arduino-controlled autonomous cars with your students. Each part contains a detailed step-by-step video and a supplemental lesson plan PDF with learning objectives, assessment opportunities, and appendices with circuit diagrams and example code. You can present the material yourself or have students follow along with the videos and pause to work on their autonomous cars. Read more
NGSS Performance Expectations:
  • HS-ETS1-2. Design a solution to a complex real-world problem by breaking it down into smaller, more manageable problems that can be solved through engineering.
Lesson Plan Grade: 6th-8th
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The human body is complex! In this lesson, it is broken down into smaller, manageable parts. Students will build a lung model and discover how different parts of the respiratory system work together to make breathing possible. Next, they will discuss how this system works together with other systems in the body so oxygen can reach every cell of the body. While students perform these explorations, they will realize that multicellular organisms consist of systems, which are a collection of organs… Read more
NGSS Performance Expectations:
  • MS-LS1-3. Use argument supported by evidence for how the body is a system of interacting subsystems composed of groups of cells.
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