Classroom Resources: Molecules & Bonding

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51 – 55 of 55 Classroom Resources

  • Polymers, Interdisciplinary, Culminating Project | Middle School, High School

    Access is an AACT member benefit. Lesson Plan: Cleaning-up the Plastic Island Mark as Favorite (21 Favorites)

    In this lesson, students will develop an understanding of the chemistry of plastics and apply their knowledge in order to engineer a cost effective and environmentally friendly method to clean up the Great Pacific Garbage Patch.

  • Polymers, Molecular Structure, Molecular Structure , Monomer, Chemical Bond, Chemical Change, Polymers, Monomer | Middle School

    Lesson Plan: The Power of Polymers Mark as Favorite (8 Favorites)

    In this lesson students will use lab activities and discussion to explore polymers and their use in 3D printing, with an emphasis on the benefits of 3D printing in automotive manufacturing.

  • Photosynthesis, Conservation of Mass, Balancing Equations, Chemical Change, Reversible Reactions, Molecular Formula, Interdisciplinary, Chemical Change, Conservation of Mass | Middle School

    Lesson Plan: The Building Blocks of Photosynthesis Mark as Favorite (3 Favorites)

    In this lesson, students will use colored blocks to represent the elements in photosynthesis and illustrate how they are broken down and reassembled to create glucose.

  • Polarity, Polymers, Molecular Structure, Monomer, Intermolecular Forces, Scientific Method, Chemical Change, Intermolecular Forces | Middle School

    Access is an AACT member benefit. Lesson Plan: Watch the Baby! Superabsorbent Polymer Mark as Favorite (6 Favorites)

    In this lesson, students will learn about how polymers, specifically superabsorbent polymers, work. Through lab activities, students will investigate polymer properties.

  • Molecular Structure, Interdisciplinary, Scientific Method | Middle School

    Access is an AACT member benefit. Lesson Plan: The Effect of Different Foods on Mealworms Mark as Favorite (1 Favorite)

    In this lesson, students will look at the chemistry of the molecules of carbohydrates, fats, and lipids, and they will use this information to determine a diet for their mealworm and will collect information about the mealworm to test a hypothesis.

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