Classroom Resources: Chemistry Basics
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26 – 50 of 304 Classroom Resources
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Graphing, Interdisciplinary | Middle School, High School
Activity: Simulation Activity: Graphing Mark as Favorite (13 Favorites)
In this activity, students will use a simulation to learn good graphing techniques, as well as how to interpret data presented in a graph. They will take a quiz in the simulation, and then have an opportunity to put their graphing skills to work and generate their own graph using sample data.
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Density, Observations, Inferences | Elementary School, Middle School, High School
Activity: Animation Activity: Density Mark as Favorite (2 Favorites)
In this activity, students will view an animation that explores density on the particulate level. There are opportunities to make qualitative and quantitative comparisons between substances.
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Periodic Table, Review, Elements, Subatomic Particles, Model of the Atom, Atomic Mass | Elementary School, Middle School
Activity: Periodic Table Challenge Game Mark as Favorite (13 Favorites)
In this activity, students will play an online game that quizzes their knowledge about the atomic structure of the first 20 elements on the periodic table. Students will be asked to identify different elements based on information related to subatomic particles, placement on the periodic table or from a provided Bohr model. This game has several options for students to choose from, and can be used to review content, or as a formative assessment.
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Model of the Atom, Atoms, Subatomic Particles, Electrons, Valence Electrons, Lewis Dot Diagrams, Electron Configuration, Physical Properties | Middle School, High School
Project: Atomic Holiday Ornaments Mark as Favorite (36 Favorites)
In this project, students will design an atomic holiday ornament for a chosen element, along with a certificate of authenticity to display on a “Chemis-tree”. Students will also have the opportunity to vote on the ornaments created by their classmates.
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Review | Middle School, High School
Activity: Vocabulary Learning Made Simple Mark as Favorite (5 Favorites)
In this activity, students write definitions for vocabulary words using only the 1000 most common English words. Then students interact with the simplified definitions in order to try to guess the vocabulary words correctly.
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Model of the Atom, Atoms, Subatomic Particles, Electrons, Atomic Mass, Isotopes, Periodic Table, Elements | Middle School, High School
Lesson Plan: Acting Out Atomic Structure Mark as Favorite (1 Favorite)
In this lesson, students will model the location and behavior of protons, neutrons, and electrons that make up the structure of atoms, focusing on the first 18 elements on the periodic table. Students will model different elements first by adding protons and neutrons (colored balls) to make the nucleus (a basket). Then, the students themselves will represent the electrons that are always moving around the nucleus yet remaining within their designated energy level. This activity is easiest to complete outside or in a large open room to allow for enough room.
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Electron Transfer, Electrons, Electricity, Model of the Atom, Atoms, Subatomic Particles, Electrons, Observations | Middle School, High School
Lesson Plan: Understanding Static Electricity Mark as Favorite (5 Favorites)
In this lesson, students will complete a series of activities to explore how the imbalance of charges in materials creates static electricity and how those materials interact with others around them. They will describe the relationship between atomic structure, specifically the role of protons and electrons, and static electricity.
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Lab Safety, Chemical Properties, Physical Properties | Middle School, High School
Activity: ACS Chemical Safety Video Questions Mark as Favorite (14 Favorites)
In this activity, students will learn about safety, a core value of chemistry, through watching related videos produced by the American Chemical Society, Students will complete guided notes and questions during the activity. This chemical safety video series includes five videos: Safety Mindset, Safety Data Sheets, How to Dress for the Lab, and PPE, Preparing for Emergencies, and RAMP (Recognize hazards, Assess risks, Minimize risks, Prepare for emergencies).
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Reaction Rate, Catalysts, Experimental Design, Chemical Change, Reaction Rate, Chemical Change | Middle School
Lesson Plan: Investigating Fast and Slow Reaction Rates Mark as Favorite (0 Favorites)
In this lesson, students will review the characteristics of chemical changes and then use a catalyst and an inhibitor to explore the reaction rate of the oxidation of iron.
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Separating Mixtures, Physical Properties, Mixtures | Middle School, High School
Lab: Mixture Separation Challenge Mark as Favorite (24 Favorites)
In this lab, students investigate the composition of a given mixture. Using their content knowledge and a variety of provided materials, students are tasked with separating the mixture into its individual components.
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Lab Safety | Middle School, High School
Demonstration: Why Do We Have to Wear Goggles? Mark as Favorite (23 Favorites)
In this simple demonstration, students will observe a reaction between an acid and an egg white and learn why is important to wear safety goggles in the lab. The reaction is similar to the damage that can be done to your eye if acid comes in contact with it.
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Physical Change, Chemical Change, Observations | Elementary School, Middle School
Lab: Comparing Physical and Chemical Changes Mark as Favorite (13 Favorites)
In this lab, students will analyze different scenarios in order to determine if a physical or chemical change has occurred. This lab experience will provide students with the opportunity to record observations, as well as improve their ability to differentiate between physical and chemical changes.
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Scientific Method, Experimental Design, Observations, Introduction, Graphing | Middle School, High School
Lab: Applying the Scientific Method to Stain Removal Mark as Favorite (57 Favorites)
In this lab, students will explore the real scientific process by designing an experiment to solve a problem. Students will learn about basic lab equipment, safety, and the scientific process of trial and error while solving a common problem: What color of food coloring requires the most bleach to remove?
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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 (23 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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Experimental Design, Scientific Method, Graphing, Observations | Middle School, High School
Lab: Mentos and Soda Investigations Mark as Favorite (21 Favorites)
In this lab, students will design their own experiment in which they manipulate a variable that relates to Mentos and soda. Students will generate a testable question, design an experiment, collect and analyze the data and present their findings.
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Heat of Vaporization , Boiling Point, Intermolecular Forces, Phase Changes, Heating Curve, Heat of Combustion, Temperature, Specific Heat, Observations, Chemical Change, Physical Change | Middle School, High School
Demonstration: Cooking an Egg in Chemistry Class Mark as Favorite (6 Favorites)
In this demonstration, students will observe the very high latent heat of vaporization for water by boiling water over a Bunsen burner in a paper cup to cook a boiled egg. The discussion can be extended to incorporate intermolecular forces to explain the unusually high boiling point of water, as well as heat of vaporization and specific heat capacity.
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Solubility, Solute & Solvent, Precipitate, Mixtures, Error Analysis, Chemical Change, Physical Change, Observations, Identifying an Unknown, Graphing | Middle School, High School
Lab: Chemicals, Chromatography, and Crime! Mark as Favorite (47 Favorites)
In this lab, students will test “evidence” that has been collected from a crime scene. In order to determine if the victim was poisoned, students will perform a solubility and crystallization test on an unknown powder. Then, students will attempt to identify the culprit by using paper chromatography to analyze the lipstick from the potential criminals.
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Scientific Method, Observations, Experimental Design | Elementary School, Middle School
Lab: Introducing the Scientific Method Mark as Favorite (19 Favorites)
In this lab, students will be introduced to and become familiar with the scientific method. They will apply their understanding by following the steps of the scientific method while investigating the amount of fat in potato chips.
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Atomic Radius, Model of the Atom, Atomic Theory, History, Inferences | Middle School, High School
Lesson Plan: Indirectly Measuring the Atom Mark as Favorite (20 Favorites)
In this lesson, students will try to determine the radius of one circle and the total area of multiple circles on a piece of paper by indirect measurement. They will relate this to the experiment done by Ernest Rutherford in which he bombarded a gold foil with Alpha particles.
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Elements, Periodic Table | Elementary School, Middle School, High School
Activity: Element Matching Puzzle Mark as Favorite (3 Favorites)
In this activity, students will become more familiar with select elements from the periodic table. They will use the periodic table to determine the symbol for given elements, and recall any prior knowledge about each element. Then students will be challenged to solve a puzzle by organizing a set of cards that contain jumbled information about these elements. After all of the cards have been correctly organized, a secret message can be found.
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History, Interdisciplinary | Middle School, High School
Activity: Spellbound Episode 8 Helen Murray Free Video Questions Mark as Favorite (2 Favorites)
In this activity, students will answer questions while watching a video from the Spellbound series produced by ACS. Each episode focuses on a different notable scientist, recounting how their interest in science was sparked in their childhood and how they went on to make great contributions to the scientific community. This eighth episode focuses on the childhood of Helen Murray Free, a former ACS president and pioneering woman in chemistry who developed self-testing diagnostic strips for diabetes and other diseases.
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History, Interdisciplinary | Middle School, High School
Activity: Spellbound Episode 7 Peter Agre Video Questions Mark as Favorite (0 Favorites)
In this activity, students will answer questions while watching a video from the Spellbound series produced by ACS. Each episode focuses on a different notable scientist, recounting how their interest in science was sparked in their childhood and how they went on to make great contributions to the scientific community. This seventh episode focuses on the childhood of Peter Agre, who won the 2003 Nobel Prize in Chemistry and is noted for his work in the study of malaria, as well as scientific diplomacy and policy.
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Lab Safety | Middle School, High School
Activity: Race to Safe Mark as Favorite (25 Favorites)
In this activity, students will be engaged in a kinesthetic activity to teach laboratory safety. They will be prompted with different laboratory safety and equipment scenarios and asked to demonstrate the correct safety protocols to follow.
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Density, Identifying an Unknown, Physical Properties | Middle School, High School
Lesson Plan: The Shattered Glass Mystery Mark as Favorite (20 Favorites)
In this lesson, students will take on the role of a Forensic Scientist to help solve a hit and run investigation. They will learn how physical properties of matter, such as density and refractive index, can be used to help identify evidence samples such as glass.
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Lab Safety, Introduction | Middle School, High School
Lesson Plan: ACS Chemical Safety Video: RAMP Mark as Favorite (15 Favorites)
In this lesson, students will learn about a simple yet powerful tool for protecting themselves and their classmates in the lab, RAMP. It stands for: Recognize hazards; Assess risks; Minimize risks and Prepare for emergencies. Using a video, and multiple activities, students will become more knowledgeable and better prepared to assess risks and identify hazards in the lab.