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High School Lesson Plans (70 results)

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Lesson Plan Grade: 4th-12th
"Boats" © 2016 Dennis Jarvis By using a model for how fishing affects marine life populations, students will construct explanations for one of the reasons why fish populations are declining. They will then work to design solutions for ways of making fisheries more sustainable for the animals and the people who depend on them. Read more
NGSS Performance Expectations:
Lesson Plan Grade: 9th-12th
Students will compare and contrast methods of selective plant breeding, describe the scientific process of creating a genetically modified plant, compare genetically modified soybean seeds to conventional soybean seeds, describe the impact weeds have on plant growth, and understand how a genetically modified seed can help farmers manage weeds. Read more
NGSS Performance Expectations:
  • HS-LS1-1. Construct an explanation based on evidence for how the structure of DNA determines the structure of proteins, which carry out the essential functions of life through systems of specialized cells.
  • HS-LS3-1. Ask questions to clarify relationships about the role of DNA and chromosomes in coding the instructions for characteristic traits passed from parents to offspring.
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.
Lesson Plan Grade: 6th-12th
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What exactly is a vaccine? Can vaccines prevent outbreaks? How effective does a vaccine need to be to help a population during an outbreak? Students will explore these questions and more in this lesson plan by first learning the biology behind vaccines. They will then use SimPandemic, a free online tool, to model different vaccine parameters to understand how vaccines affect both individuals and populations during a COVID-19 outbreak. Remote learning adaptation: This lesson plan can be… Read more
NGSS Performance Expectations:
  • MS-LS2-1. Analyze and interpret data to provide evidence for the effects of resource availability on organisms and populations of organisms in an ecosystem.
  • MS-LS2-4. Construct an argument supported by empirical evidence that changes to physical or biological components of an ecosystem affect populations.
  • HS-LS2-8. Evaluate evidence for the role of group behavior on individual and species' chances to survive and reproduce.
Lesson Plan Grade: 9th-12th
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Teach your students about the engineering design process with this fun lesson plan. They will design and build two "volleyball machines" that launch a ping pong ball back and forth over a net. While the 2019 Engineering Challenge is over, your students can still try this project and compare their scores to top scores from around the world! Teachers, note that elementary school and middle school versions of this lesson plan are also available. Looking for this year's challenge? Check out… Read more
NGSS Performance Expectations:
  • High School - Science & Engineering Practices
Lesson Plan Grade: 9th-12th
Building on an introduction to statics, dynamics free-body diagrams, combustion and thermodynamics provided by the associated lesson, students design, construct and test their own rocket engines using sugar and potassium nitrate—an opportunity to apply their knowledge of stoichiometry. This activity helps students understand that the energy required to launch a rocket comes from the chemical energy stored in the rocket fuel. The performance of each engine is tested… Read more
NGSS Performance Expectations:
  • HS-PS3-3. Design, build, and refine a device that works within given constraints to convert one form of energy into another form of energy.
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: 9th-12th
Students learn how astronomers use the transit method to detect exoplanets, by measuring how the brightness of a star changes over time. Animations illustrate how light curves vary for systems with single versus multiple planets, and for planets of different sizes. Students interpret and analyze light curve data from actual exoplanet discoveries, and make connections to Kepler's laws of planetary motion. Read more
Lesson Plan Grade: 9th-12th
This lesson plan enables students to describe a transit and the conditions when a transit may be seen, describe how a planet’s size and distance from its star affects the behavior of transits, and interpret graphs of brightness vs time to deduce information about planet-star systems. Read more
Lesson Plan Grade: 9th-12th
The star TRAPPIST-1 has seven earth-sized rocky planets. Students calculate planet densities, travel time to reach TRAPPIST-1, and how much they would weigh on each planet. Read more
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