Classroom Resources: Molecules & Bonding
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76 – 100 of 108 Classroom Resources
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Electromagnetic Spectrum, Molecular Structure, Chemical Bond, Molecular Structure | High School
Video: Ingenious Video 2: What Birds Know About Color that You Don't Mark as Favorite (8 Favorites)
We’ve been using pigments and dyes for thousands of years, but they’re not the whole story when it comes to making color. “Structural” color occurs when tiny nanostructures interact with light waves, amplifying certain colors and canceling others. From brilliant bird feathers to butterfly wings, mole hairs to octopus skin, structural color is everywhere in the natural world. Researchers have tried for years to harness this incredible natural phenomenon in a useful way. Because these colors are so small and complex, and therefore hard to copy, their efforts have met with little success. But novel research using a computer model based in repeated random sampling — a so-called “Monte Carlo” model — is showing promise. Using this approach, scientists have been able to mimic the gorgeous blue of the mountain bluebird in a thin film of reflective beads, leapfrogging millennia of evolution.
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Molecular Structure, Chemical Bond, Electromagnetic Spectrum, Molecular Structure | High School
Activity: Ingenious: What Birds Know About Color that You Don't Video Questions Mark as Favorite (3 Favorites)
In this activity, students will answer questions while watching the video, What Birds Know about Color that You Don’t, from the Ingenious series produced by the American Chemical Society. Each episode investigates a different topic related to how leading-edge chemistry is taking on the world’s most urgent issues to advance everyone’s quality of life and secure our shared future. This episode investigates structural color, its complexities as well as how it differs from pigments and dyes.
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Molecular Structure, Catalysts | High School
Activity: Ingenious: The Strange Chemistry Behind Why You Get Sick on Planes Video Questions Mark as Favorite (4 Favorites)
In this activity, students will answer questions while watching the video, The Strange Chemistry Behind Why You Get Sick on Planes, from the Ingenious series produced by the American Chemical Society. Each episode investigates a different topic related to how leading-edge chemistry is taking on the world’s most urgent issues to advance everyone’s quality of life and secure our shared future. This episode investigates the compound ozone and why it might be responsible for some of the discomforts associated with air travel.
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VSEPR Theory, Molecular Geometry, Resonance, Covalent Bonding | High School
Activity: Shapes of Molecules Mark as Favorite (92 Favorites)
In this activity, students will investigate the VSEPR geometry of covalent compounds. They will draw Lewis structures, use molecular models, and determine the geometry of covalent compounds. There is a lot of repetition so students gain a lot of practice.
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Physical Properties, Chemical Properties, Elements, Matter, Covalent Bonding, Ionic Bonding, Intermolecular Forces, Polymers | Middle School, High School
Project: The Chemistry of Toys Mark as Favorite (35 Favorites)
In this project, students will study the chemistry behind a toy or novelty item of their choosing. They will look at the parts that make up their item and determine what materials each part is made of; the types of atoms, molecules, and bonds present in those materials; and their physical and chemical properties.
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Molecular Structure, Introduction, Matter | High School
Activity: Real World Particle Diagramming Mark as Favorite (82 Favorites)
In this activity, students illustrate everyday objects on the particulate level. To do this, students pick an object around the school (or their home) and then take a picture of the object, research its composition, and draw a particle diagram representation of the object. This helps students to gain confidence in representing matter at a particulate level by starting with familiar objects.
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Intermolecular Forces, Physical Change, Intermolecular Forces, Polarity | High School
Activity: Intermolecular Forces Activity Mark as Favorite (17 Favorites)
In this activity, students will represent molecules and energy to investigate the different types of intermolecular forces.
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Mole Concept, Dimensional Analysis, Molar Mass, Molecular Formula | High School
Activity: Calculating Moles in Daily Life Mark as Favorite (170 Favorites)
In this activity, students will use dimensional analysis to complete calculations and conversions for the number of moles, atoms, and molecules in several everyday household items using collected data.
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Culminating Project, Chemical Properties, Physical Properties, History, VSEPR Theory, Polymers, Covalent Bonding | High School
Project: The Evolution of Materials Science in Everyday Products Mark as Favorite (77 Favorites)
In this project, students will be able to understand the progression of development of an everyday product and display their knowledge through a creative video. They will investigate the history and chemical composition of the product through the present day. The students will then suggest an innovation about how the product can be altered in the future to improve society.
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Molecular Structure, Intermolecular Forces, Ionic Bonding, Covalent Bonding, Metallic Bonding, Polarity, Intramolecular Forces, Chemical Properties, Physical Properties, Interdisciplinary, Culminating Project | High School
Project: Problem-Solving with Materials Mark as Favorite (61 Favorites)
In this project, students will develop a presentation to explain how and why a specific material can solve a problem. The explanation will involve researching the properties of the material and how its properties are suited for solving a specific problem.
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Polyatomic Ions, Ionic Bonding | High School
Activity: Common Ion Memory Game Mark as Favorite (20 Favorites)
In this activity, students will play a modified version of the classic Memory Game in order to help identify common ions by name and symbol. This activity provides an opportunity for students to increase their familiarity with the names and formulas of common ions that they will be expected to properly use when they begin writing chemical formulas and reactions.
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Subatomic Particles, Model of the Atom, Elements, Molecular Formula | Middle School, Elementary School
Project: What's It Made Of? Mark as Favorite (15 Favorites)
In this project each student will conduct research to discover what compounds, molecules, and elements make up a basic everyday object of their choice. The student will create a poster detailing what the object is made of, including a Bohr model. The student will also create a question about their object’s atomic structure for their peers as part of a culminating project gallery walk to observe, discuss, and learn about each poster.
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Covalent Bonding, Lewis Structures, VSEPR Theory, Electronegativity, Polarity, Atomic Radius, Valence Electrons | High School
Project: Molecular Modeling Mark as Favorite (119 Favorites)
In this project, students will research a molecule selected from the teacher approved list, construct a three-dimensional model of the molecule, and present their research to the class in a 7-10 minute oral presentation.
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Introduction, Interdisciplinary, History, Heat, Renewable Energy, Polymers, Molecular Structure | Middle School, High School
Video: Frontiers of Chemistry Mark as Favorite (21 Favorites)
This video explores new scientific developments that were made possible by the application of fundamental chemistry concepts. Students will learn about exciting advances in science and technology focused on three main topics: Solar Cells, 3D Printing and Micro Machines.
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Molecular Structure, Molecular Geometry, Polymers, Electronegativity, Heat, Temperature, Electricity | Middle School, High School
Video: The Future of Paint Video Mark as Favorite (20 Favorites)
This video explores the fascinating and innovative scientific advancements of paint. Students will learn how the molecular components in paint are helping to evolve in the world around them. Futuristic paint is capable of replacing light switches, conducting electricity, and regulating temperature amongst other things!
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Molecular Structure, Molecular Geometry, History, Periodic Table, Molecular Structure | Elementary School, Middle School, High School
Video: Phosphorous Video Mark as Favorite (11 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.
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Naming Compounds, Observations | High School
Activity: Ionic Compound Identification Mark as Favorite (23 Favorites)
In this activity, students will practice naming and writing formulas of ionic compounds by looking at examples.
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Ionic Bonding, Naming Compounds, Polyatomic Ions | High School
Activity: Introduction to Naming and Formula Writing for Ionic Compounds Mark as Favorite (127 Favorites)
In this activity, students will be introduced to ionic compound formulas and names. They will group prepared cut-outs to note similarities and differences among different classes of ionic compounds (i.e. binary and ternary, including metals with varying charges). The goal is not to be equipped to write names and formulas for ionic compounds, but to recognize trends in naming.
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Molecular Formula, Naming Compounds, Ionic Bonding, Covalent Bonding, Molar Mass | High School
Activity: Formula Card Game Mark as Favorite (55 Favorites)
In this activity, students play a card game to practice creating chemical formulas.
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Molecular Structure, Molecular Geometry, Bond Energy | High School
Activity: Find the Best Bond Angle and Bond Length of Water Mark as Favorite (6 Favorites)
In this activity, students participate in an introductory level computational chemistry investigation. Students will interact with computational software to conduct this activity and will analyze data to determine the best bond angle and bond length of a water molecule.
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VSEPR Theory, Molecular Geometry, Molecular Structure, Lewis Structures, Covalent Bonding | High School
Activity: Discovering Molecular Shapes Mark as Favorite (39 Favorites)
In this activity, students will use tactile methods (manipulation of connected strings) and a computer simulation to discover how electron-electron repulsion determines the 3D VSEPR geometric shapes of simple covalent molecules. It will allow them to practice drawing Lewis structures as well as deepen their understanding of the connection between a molecule’s structure and its shape.
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Mole Concept, Significant Figures, Dimensional Analysis, Measurements, Scientific Notation, Molar Mass, Molecular Formula | High School
Activity: Can You Color A Mole? Mark as Favorite (105 Favorites)
In this activity, students determine how many moles of paraffin are used when they color a piece of paper as well as how many molecules and moles of wax are in one crayon.
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Ionic Bonding, Covalent Bonding, Molecular Formula, Naming Compounds, Stoichiometry, Limiting Reactant, Classification of Reactions | High School
Activity: Isn't it Ionic Mark as Favorite (59 Favorites)
In this activity students will form ionic compounds and covalent compounds using clues and questions. Students are going to then develop their own stoichiometric problems and have other groups attempt to solve it.
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Covalent Bonding, Ionic Bonding, Metallic Bonding, Electronegativity, Polarity, Intermolecular Forces | High School
Activity: James Bonded Mark as Favorite (18 Favorites)
In this activity, students create a video of collisions that represent chemical reactions.
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Covalent Bonding, Naming Compounds, Molecular Formula, Lewis Structures | High School
Activity: Molecular Compound Dice Mark as Favorite (102 Favorites)
In this activity students will use dice and element cards to name molecular compounds and draw their Lewis dot structures.