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Eleventh Grade Lesson Plans (65 results)

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Lesson Plan Grade: 9th-12th
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Students become biomedical engineers and create model viruses for use in therapeutic applications, such as gene therapy. In constructing their models, students carefully plan for side effects and modify a virus that can be used to safely to deliver gene therapy. This process involves taking a "wild type" (or unmodified) virus so it can target a specific area of the body.Engineering Connection Genetic engineering is the artificial manipulation, modification, and… 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: 4th-12th
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By conducting their own survey of an outdoor environment, students will examine a method for assessing litter, identify how humans impact the environment, and design solutions for preventing marine debris. Read more
NGSS Performance Expectations:
  • 4-ESS2-2. Analyze and interpret data from maps to describe patterns of Earth's features.
  • 5-ESS3-1. Obtain and combine information about ways individual communities use science ideas to protect the Earth's resources and environment.
  • MS-ESS3-3. Apply scientific principles to design a method for monitoring and minimizing a human impact on the environment.
  • HS-LS2-7. Design, evaluate, and refine a solution for reducing the impacts of human activities on the environment and biodiversity.
Lesson Plan Grade: 9th-12th
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Teach your students how temperature affects chemical reaction rates in this highly visual experiment! Students will investigate color change during the reaction of food color with bleach, and measure the reaction times for different reaction temperatures. Read more
NGSS Performance Expectations:
  • HS-PS1-5. Apply scientific principles and evidence to provide an explanation about the effects of changing the temperature or concentration of the reacting particles on the rate at which a reaction occurs.
Lesson Plan Grade: 9th-12th
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In this fun engineering lesson plan, your students will build rubber band-powered cars using readily available craft supplies. The challenge is to build a car that goes as far as possible while making careful use of materials. Elementary school and middle school versions of this lesson plan are also available. This lesson was part of the 2024 Science Buddies Engineering Challenge. Read more
NGSS Performance Expectations:
  • High School - Science & Engineering Practices
Lesson Plan Grade: 3rd-12th
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"Backlit Leaf" © 2011 Threthny Plants have many crucial roles on our planet, and among these is the gas exchange that happens within their leaves. As plants take in carbon dioxide from our atmosphere, they release oxygen and retain the carbon. In this lesson, students will investigate leaves up close to look for the structures responsible for gas exchange. Read more
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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"Vacuum sealed" © 2010 Windell Oskay In this activity, students are asked to create a change in air pressure using a garbage bag and vacuum cleaner, then create an illustration, model or concept map that explains what is happening. This activity is part of the KQED Engineering Is: Bringing Fish Up from the Deep e-book. The e-book explores the science and engineering principles behind the California Academy of Sciences' portable… Read more
Lesson Plan Grade: 6th-12th
© 2017 California Academy of Sciences With a few guidelines and some innovative thinking, we can design spaces to have sufficient light and be energy-efficient. Read more
Lesson Plan Grade: 9th-12th
Students construct paper recombinant plasmids to simulate the methods genetic engineers use to create modified bacteria. They learn what role enzymes, DNA and genes play in the modification of organisms. For the particular model they work on, they isolate a mammal insulin gene and combine it with a bacteria's gene sequence (plasmid DNA) for production of the protein insulin.Engineering Connection Bacteria are the most common organisms modified by genetic engineers due to… 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.
Lesson Plan Grade: 9th-12th
Students act as if they are biological engineers following the steps of the engineering design process to design and create protein models to replace the defective proteins in a child's body. Jumping off from a basic understanding of DNA and its transcription and translation processes, students learn about the many different proteins types and what happens if protein mutations occur. Then they focus on structural, transport and defense proteins during three challenges… 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-LS1-2. Develop and use a model to illustrate the hierarchical organization of interacting systems that provide specific functions within multicellular organisms.
  • 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.
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