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Zoology Lesson Plans (16 results)

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Lesson Plan Grade: 6th-8th
Students use ultrasonic sensors and LEGO© MINDSTORMS© EV3 robots to emulate how bats use echolocation to detect obstacles. They measure the robot's reaction times as it senses objects at two distances and with different sensor threshold values, and again after making adjustments to optimize its effectiveness. Like engineers, they gather and graph data to analyze a given design (from the tutorial) and make modifications to the sensor placement and/or threshold… Read more
NGSS Performance Expectations:
  • MS-ETS1-4. Develop a model to generate data for iterative testing and modification of a proposed object, tool, or process such that an optimal design can be achieved.
Lesson Plan Grade: Kindergarten
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In this lesson, each student will create a bird feeder from recycled, bird-safe materials. While designing their own bird feeders, students will discuss what basic needs an animal has and how they can meet these needs with the structure they build. Read more
NGSS Performance Expectations:
  • K-LS1-1. Use observations to describe patterns of what plants and animals (including humans) need to survive.
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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: 6th-12th
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Scientists are concerned that climate change could cause the spread of mosquito populations that carry diseases like malaria, West Nile virus, Zika virus, and dengue fever. In this lesson plan, your students will access real-world data on mosquitoes at different locations throughout the United States, and examine the effects of temperature on mosquito populations. Remote learning adaptation: This lesson plan can be conducted remotely. Students can work independently on the Explore section of… Read more
NGSS Performance Expectations:
  • MS-LS2-4. Construct an argument supported by empirical evidence that changes to physical or biological components of an ecosystem affect populations.
  • HS-LS2-1. Use mathematical and/or computational representations of phenomena or design solutions to support explanations of factors that affect carrying capacity of ecosystems at different scales.
Lesson Plan Grade: 6th-12th
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"He's too tiny to measure up."© 2006 Patty O'Hearn Kickham Some organisms, like whales and redwood trees, are so large that it's hard for us to picture just how big they are! In this lesson, students practice mathematics and computational thinking to create scale models of themselves, and then apply these skills to create models of other large organisms. This activity works best when stretched out… Read more
Lesson Plan Grade: 3rd-5th
"Earthworms!" © 2009 Yun Huang Yong Let's construct a home for macroinvertebrates! Third graders observe the manor discovering which organisms can survive well and how they change when their environment changes. Fifth graders develop a model to describe the manor and the movement of matter among the plants, animals, decomposers and the environment. This project is designed to span a month or longer. Read more
Lesson Plan Grade: 5th-10th
"Osprey with Gulls" © 2014 Lee Jaffe Why do birds migrate? How do seasonal changes in primary productivity influence the behaviors of higher order consumers like raptors? Visualize and explore the connectedness of organisms within and across ecosystems in this teacher-guided activity. Read more
NGSS Performance Expectations:
  • MS-LS2-2. Construct an explanation that predicts patterns of interactions among organisms across multiple ecosystems.
  • MS-LS2-3. Develop a model to describe the cycling of matter and flow of energy among living and nonliving parts of an ecosystem.
  • MS-LS2-4. Construct an argument supported by empirical evidence that changes to physical or biological components of an ecosystem affect populations.
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