Classroom Resources: Electrochemistry


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26 – 46 of 46 Classroom Resources

  • Electricity, Renewable Energy, Photosynthesis, Electron Transfer, Redox Reaction, Oxidation, Reduction | High School

    Access is an AACT member benefit. Lesson Plan: Color Solar Power! Mark as Favorite (12 Favorites)

    In this lesson students will make a dye-sensitized solar cell (also known as DSC or Gratzel cell) using extracts from blackberries, raspberries, blueberries, red cabbage, strawberries, beetroot, spinach and dried hibiscus petals. Students will measure the voltage and the current of various light sources using the created solar cells and then compare the effectiveness of each.

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    Chemical Change, Beer's Law, Redox Reaction, Reduction, Oxidation, Concentration, Reaction Rate | High School

    Access is an AACT member benefit. Lesson Plan: Rustbusters! A Lab Activity on Corrosion Mark as Favorite (12 Favorites)

    In this lesson students learn about factors affecting the rate of corrosion and evaluate the efficiency of different protective coatings to simulate products used in industry when building metal structures like ships or bridges.

  • Electromagnetic Spectrum, Redox Reaction, Molecular Structure, Law of Conservation of Energy, Half Reactions, Oxidation Number, Oxidation, Reduction, Intermolecular Forces | High School

    Lesson Plan: Fading Away Mark as Favorite (15 Favorites)

    In this lesson students will explore photodegradation of color. First, students will view how fading of paint has affected Van Gogh’s great works of art and the efforts that are being taken to conserve these works. While exploring, students will actively engage in research to relate the fading process to redox reactions, X-Ray diffraction, solute-solvent interactions, and light/energy calculations. Students will then act as an Engineering Task Force and brainstorm to identify how photodegradation affects modern day objects and plan how to address their fading in an effort to market to the airliner Jetstar

  • Activity Series, Chemical Change, Redox Reaction, Reduction, Oxidation, Balancing Equations | High School

    Access is an AACT member benefit. Lesson Plan: Single Displacement Reactions with Test Tube Diagrams Mark as Favorite (64 Favorites)

    In this lesson students will perform and analyze two single displacement reactions and prepare and manipulate Test Tube Diagrams to depict the activity at the molecular level. Using manipulatives representing individual ions, atoms and molecules for the various reactants and products, they will accurately represent species in the solid, gaseous and aqueous states by correlating the Test Tube Diagram to the complete ionic equation for each reaction. They will determine the reactants and products responsible for color, as well as identify which species is oxidized and which is reduced.

  • Activity Series, Chemical Change, Oxidation, Reduction, Net Ionic Equation, Redox Reaction, Observations | High School

    Access is an AACT member benefit. Lab: Fine Art of Redox Mark as Favorite (24 Favorites)

    In this lab, students will practice writing and balancing redox reactions and use the activity series to verify the outcome of a chemical reaction.

  • Reduction, Oxidation, Redox Reaction, Catalysts, Activation Energy, Combustion | Elementary School, Middle School, High School

    Access is an AACT member benefit. Video: Catalytic Converters Video Mark as Favorite (31 Favorites)

    This video investigates the role of a catalytic converter and its corresponding chemical reactions within a vehicle. Students will learn about both oxidation and reduction reactions and how they, in combination with a catalyst, can impact the molecules released in a car’s exhaust.

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    Redox Reaction, Half Reactions, Reduction, Oxidation, Cathode, Anode | High School

    Access is an AACT member benefit. Activity: What Powers Your World? Mark as Favorite (12 Favorites)

    In this activity, students will assess the battery power sources for electronic devices they use each day, and then relate the information to their study of oxidation-reduction reactions and electrochemistry.

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    Chemical Change, Exothermic & Endothermic, Redox Reaction, Reaction Rate | High School

    Access is an AACT member benefit. Demonstration: Potassium Permanganate Demo Mark as Favorite (7 Favorites)

    In this demo, students witness two chemicals that take some time to react. The KMnO4 and glycerin come into contact and appear not to react, but then a flame results. This is an example of an exothermic redox reaction.

  • Redox Reaction, Electron Transfer, Chemical Change, Observations, Experimental Design, Scientific Method | High School, Middle School

    Access is an AACT member benefit. Lab: Test Tube Geology Mark as Favorite (7 Favorites)

    In this lab, students will observe a reaction between an iron nail and copper(II) sulfate in a test tube over the course of several days, modeling how a similar reaction occurs to form copper deposits in the earth. Students will also modify the procedures to evaluate how changing a factor of their choice affects the results of the test tube reaction, introducing them to concepts of experimental design. It also introduces students to my version of the Science Writing Heuristic (SWH).

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    Redox Reaction, Galvanic Cells, Reduction, Oxidation, Electrons, Electron Transfer, Cathode, Anode, Half Reactions | High School

    Access is an AACT member benefit. Lesson Plan: How Fuel Cells Work Mark as Favorite (6 Favorites)

    In this lesson students will investigate how fuel cells provide energy in modern cars. Students will have the opportunity to explore redox reactions, through both an online animation and a simulation in order to understand the potential of a fuel cell.

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    Redox Reaction, Gibb's Free Energy , Spontaneous Reactions , Reduction, Oxidation, Half Reactions, Galvanic Cells, Electrons, Electron Transfer, Cathode, Anode, Reduction Potentials, Exothermic & Endothermic, Spontaneous vs. Non-spontaneous Reactions, Dimensional Analysis | High School

    Access is an AACT member benefit. Lesson Plan: How Far Can We Go? Mark as Favorite (7 Favorites)

    In this lesson students compare energy densities of lead acid and lithium ion batteries to understand the relationship between electrochemical cell potentials and utilization of stored chemical energy.

  • Reduction, Classification of Reactions, Redox Reaction, Functional Groups, Chemical Change | High School

    Access is an AACT member benefit. Lab: Silver Test Tube Holiday Ornament Mark as Favorite (20 Favorites)

    In this lab, students will carry out a reduction reaction in order to create a silver-plated test tube that can be used as a holiday ornament.

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    Galvanic Cells, Reduction, Oxidation, Half Reactions, Cathode, Anode, Redox Reaction, Electrons, Electron Transfer, Net Ionic Equation, Error Analysis | High School

    Access is an AACT member benefit. Lab: Four-Way Galvanic Cell Mark as Favorite (25 Favorites)

    In this lab, students will build a simple galvanic cell to measure cell potential and will compare their data to theoretical calculations. Students will become more familiar with cells during this opportunity to investigate and compare numerous electrochemistry reactions.

  • Percent Yield, Redox Reaction, Balancing Equations, Reduction | High School

    Access is an AACT member benefit. Lab: Reduction of Metal Oxides Using Carbon Mark as Favorite (0 Favorites)

    In this lab, students reduce metal ores using an alternative apparatus to a traditional crucible.

  • Classification of Reactions, Oxidation, Reduction, Percent Yield, Stoichiometry, Chemical Change, Redox Reaction, Activity Series, Error Analysis, Dimensional Analysis, Mole Concept, Measurements | High School

    Access is an AACT member benefit. Lab: Extracting Copper From Ore Mark as Favorite (16 Favorites)

    In this lab, students extract copper from copper carbonate using two different methods, and then determine which industrial method is most effective.

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    Activity Series, Oxidation, Reduction, Redox Reaction, Electricity, Electrons, Electron Transfer, Reduction Potentials | High School

    Access is an AACT member benefit. Lab: Reactivity & Electrochemistry Mark as Favorite (11 Favorites)

    In this lab, students will relate cell potential to the activity series.

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    Chemical Change, Activity Series, Redox Reaction, Electrons, Electron Transfer, Reduction, Oxidation, Half Reactions, Galvanic Cells, Observations, Chemical Change | High School

    Access is an AACT member benefit. Lesson Plan: Exploring Automotive Corrosion Mark as Favorite (10 Favorites)

    In this lesson students will investigate the galvanic corrosion that can occur when different metals come in contact with each other in modern cars.

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    Electrolysis, Cathode, Anode, Half Reactions, Redox Reaction, Reduction, Oxidation, Electron Transfer, Balancing Equations, Exothermic & Endothermic | High School

    Access is an AACT member benefit. Lab: Electrolysis of Water Mark as Favorite (34 Favorites)

    In this lab, students will perform the electrolysis of water using a battery, test tubes, thumbtacks, and a plastic cup.

  • Chemical Change, Classification of Reactions, Oxidation, Reduction, Redox Reaction, Electrons, Electron Transfer, Observations, Inferences, Chemical Change | Middle School

    Access is an AACT member benefit. Lesson Plan: One Tube Reaction Mark as Favorite (5 Favorites)

    In this lesson, students will observe a chemical change involving oxidation and reduction.

  • Chemical Change, Oxidation, Reduction, Redox Reaction, Electrons, Electron Transfer | Middle School

    Access is an AACT member benefit. Lesson Plan: Old Rusty Mark as Favorite (2 Favorites)

    In this lesson, students will explore the concept of oxidation of metals by creating designs on fabric or paper using rusty objects.

  • Redox Reaction, History, Oxidation, Reduction, Chemical Change, Observations | High School

    Access is an AACT member benefit. Demonstration: Nitric Acid Acts Upon Copper Mark as Favorite (11 Favorites)

    In this demonstration, students will hear a story about Ira Remsen and watch a demonstration that recreates her first experiment reacting nitric acid with a copper penny.

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