Classroom Resources: Molecules & Bonding


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51 – 75 of 75 Classroom Resources

  • Electromagnetic Spectrum, Molecular Structure, Mixtures | Middle School, High School

    Access is an AACT member benefit. Video: What are Pigments? Video Mark as Favorite (14 Favorites)

    This video discusses the chemistry of pigment molecules and how they are used to give paints their specific color. Students will learn about the importance of a pigment’s molecular structure, how they are physically suspended to create a paint color, as well as how they interact with light.

  • Mixtures, Solute & Solvent, Intermolecular Forces, Intermolecular Forces, Molecular Formula, Molecular Structure, Polymers, Electromagnetic Spectrum | Middle School, High School

    Access is an AACT member benefit. Video: What is Paint? Video Mark as Favorite (17 Favorites)

    This video investigates the composition of paint, while analyzing the fundamental chemistry principles of its main components. Students will learn about the differences between three common paint types, water colors, oil-based and acrylic paint as well as the chemistry of each.

  • Periodic Table, Electronegativity, VSEPR Theory, Polarity, Molecular Structure | High School

    Activity: Making Connections between Electronegativity, Molecular Shape, and Polarity Mark as Favorite (70 Favorites)

    In this activity, students will find the electronegativity values of a variety of elements, draw the Lewis structures of select molecules that are made with those elements, and identify the molecular shape of each molecule. Students will then be asked to determine if the molecules are polar or nonpolar based on the electronegativity values of the atoms and the molecular shape. Students will use Ptable.com to find information about atoms and molecules and connect what they find to observable properties.

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    Buffers, Solubility, Molecular Structure | High School

    Access is an AACT member benefit. Lab: Aspirin Tablets: Are they all the Same? Mark as Favorite (54 Favorites)

    In this lab, students will design an experiment to test the time and completeness of dissolution of various types of aspirin in different pH environments.

  • Ionic Bonding, Covalent Bonding, Melting Point, Molecular Structure | High School

    Access is an AACT member benefit. Lab: Ionic vs. Covalent Compounds Mark as Favorite (147 Favorites)

    In this lab, students will compare two seemingly similar substances, salt and sugar. Through melting a sample of each substance and analyze of their chemical composition, students will draw conclusions regarding ionic and covalent compounds.

  • Chemical Change, Molecular Structure | Middle School

    Access is an AACT member benefit. Lab: Detecting Fats and Starches in Food Mark as Favorite (5 Favorites)

    In this lab, students will identify fats and starches in a variety of foods. Since we eat many complex foods which contain mixtures of carbohydrates (e.g. sugars and starches), fats, and proteins, conducting food tests will enable the students to determine the make up of a certain food.

  • Physical Properties, Molecular Structure, Polarity | High School, Elementary School, Middle School

    Access is an AACT member benefit. Activity: What Makes Water So Special? Mark as Favorite (52 Favorites)

    In this activity, students will become familiar with the special properties of water by completing several activities that investigate the following physical properties/phenomena: cohesion, adhesion, surface tension, and capillary action.

  • Molecular Structure , Molecular Structure, Molecular Formula, Naming Compounds, Chemical Bond, Interdisciplinary, Introduction | Middle School, High School

    Access is an AACT member benefit. Activity: Modeling Carbohydrates Mark as Favorite (14 Favorites)

    In this activity, students will identify that organic compounds contain carbon and other elements such as hydrogen and oxygen. They will investigate the structure of different organic and inorganic compounds and model several molecules, including a carbohydrate molecule. They will use their models to help understand how larger molecules are broken down into smaller molecules.

  • Molecular Formula, History, Covalent Bonding, Molecular Structure, Physical Properties, Chemical Properties | High School

    Access is an AACT member benefit. Activity: Molecule of the Week Mark as Favorite (37 Favorites)

    In this activity, students research and present a molecule they find relevant to real life, either in the past or present. They must submit notes to the teacher the day before they present their findings in five to 10 minutes to their chemistry class.

  • Molecular Structure, Molecular Geometry, History, Periodic Table, Molecular Structure | Elementary School, Middle School, High School

    Access is an AACT member benefit. Video: Phosphorous Video Mark as Favorite (9 Favorites)

    In this video, Sam Kean tells the story of how phosphorus was at the center of the race to discover the structure of DNA.

  • 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 (5 Favorites)

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

  • Polymers, Intermolecular Forces, Molecular Structure, Physical Properties | High School

    Access is an AACT member benefit. Lesson Plan: The Right Polymer for the Job Mark as Favorite (17 Favorites)

    In this lesson students are introduced to polymeric materials by exploring polymers (mostly plastics) used in automobiles. Students will learn about the features that all polymeric materials have in common and the features that distinguish one polymer from another on the molecular level. Students will learn how the molecular differences translate into property differences. The selection of a polymer with the right properties for any particular application is of critical importance in an automobile.

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

    Lesson Plan: The Power of Polymers Mark as Favorite (7 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.

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    Physical Properties, Intermolecular Forces, Identifying an Unknown, Experimental Design, Scientific Method, Error Analysis, Graphing, Molecular Structure | High School

    Access is an AACT member benefit. Lesson Plan: The Importance of Motor Oil Viscosity in Optimal Car Functioning Mark as Favorite (14 Favorites)

    In this lesson students will determine how temperature affects viscosity and relate the data to the structure of motor oil and the optimal functioning of a car.

  • 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 (0 Favorites)

    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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    Isomers, Intermolecular Forces, Molecular Geometry, Molecular Structure, Intermolecular Forces, Boiling Point, Melting Point, Phase Changes, Isomers, Molecular Structure , Distillation, Separating Mixtures, Physical Properties | High School

    Access is an AACT member benefit. Lesson Plan: Structural Isomers Mark as Favorite (16 Favorites)

    In this activity, students will use models to explore structural isomers, and create explanations for the impact of structure on intermolecular forces (London dispersion) and physical properties (boiling point).

  • Polymers, Physical Properties, Molecular Structure, Experimental Design, Scientific Method, History, Interdisciplinary | High School

    Access is an AACT member benefit. Lesson Plan: Give Your Car Some Bounce Mark as Favorite (3 Favorites)

    In this lesson students will learn about polymerization, specifically as it pertains to rubber tires and other materials in a vehicle. Students will take on the role of an engineer, and will investigate physical properties of different polymers and/or elastomers to determine the best material to use for an assigned product.

  • Conservation of Matter, Chemical Change, Photosynthesis, Balancing Equations, Reversible Reactions, Molecular Formula, Molecular Structure, Conservation of Mass, Interdisciplinary, Matter, Elements, Monomer | Elementary School

    Access is an AACT member benefit. Lesson Plan: Plant Chemistry Mark as Favorite (1 Favorite)

    In this lesson, students will explore a simple, but key, biochemical reaction: photosynthesis.

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    Intermolecular Forces, Solubility, Intermolecular Forces, Intramolecular Forces, Polarity, Lewis Structures, Molecular Structure, Solute & Solvent, Mixtures, Melting Point, Freezing Point, Boiling Point, Physical Properties, Graphing, Mixtures | High School

    Access is an AACT member benefit. Lab: Physical Properties (High School) Mark as Favorite (27 Favorites)

    In this lesson, students investigate how intermolecular forces effect physical properties by investigating substances’ melting points as well as solubility.

  • Polymers, Polymers, Molecular Structure, Physical Properties | High School

    Access is an AACT member benefit. Activity: Molecular Spaghetti Mark as Favorite (8 Favorites)

    In this activity, students will discover how the entanglement in cooked spaghetti depends on the length of the spaghetti strands and relate this discovery to polymeric materials.

  • Molecular Formula, Functional Groups, Molecular Structure, Saturated vs. Unsaturated, Molecular Structure , Oxidation | High School

    Lesson Plan: Chocolate: The New Health Food Mark as Favorite (24 Favorites)

    Explore emergency lesson plans from ChemMatters magazine.

  • Molecular Structure, Molecular Structure , Interdisciplinary, Chemical Change, Distillation, Renewable Energy, Enthalpy, Stoichiometry, Chemical Change, Combustion | High School

    Access is an AACT member benefit. Lesson Plan: Biofuels of the Future Mark as Favorite (11 Favorites)

    In this lesson students will explore the world of automobile alternative energy sources through the study of biofuels. They will design and create an e-book that illustrates and explains one of the provided topics or an original idea approved by the teacher.

  • Mixtures, Physical Properties, Molecular Structure, Mixtures | Elementary School, Middle School, High School

    Access is an AACT member benefit. Demonstration: Analyzing Mixtures Mark as Favorite (36 Favorites)

    In this demonstration, the teacher will create a sequence of mixtures in a single test tube. Water, oil, food coloring and soap will be used in this demonstration to introduce the concepts of heterogeneous and homogeneous solutions as well as the idea of miscibility. Students will also have the opportunity to analyze the properties, such as surface tension of each component used.

  • Molecular Formula, History, Functional Groups, Covalent Bonding, Molecular Structure | High School

    Access is an AACT member benefit. Activity: Napoleon's Buttons Writing Assignment Mark as Favorite (25 Favorites)

    In this activity, students read Penny Le Couteur and Jay Burreson’s book Napoleon’s Buttons: How 17 Molecules Changed History. They discuss the book in class and complete a written assignment based on the chemistry and history highlighted in the book.

  • Chemical Bond, Molecular Structure, Atoms, Elements, Matter, Interdisciplinary, Naming Compounds | Elementary School

    Access is an AACT member benefit. Lesson Plan: Modeling Molecules Mark as Favorite (0 Favorites)

    In this lesson, students explore the structure of matter by designing, building, comparing, and evaluating models of a variety of simple molecules.

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