We can force non-spontaneous electrochemical reactions by applying a voltage to overcome the natural tendency of the redox reaction. This allows us to "run reactions backwards" and to produce elements from ionic compounds!
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Week 13 - 17. Aluminum - the most precious of metals?!
Week 13 - 16. Making aluminum via electrolysis
Week 13 - 15. Stoichiometry of electrolysis (part two)
Week 13 - 14. Stoichiometry of electrolysis
Week 13 - 12. A modified Nernst eq using base-10 logarithms
Week 13 - 13. Electrolysis
Week 13 - 11. The Nernst equation - how cell voltage changes with concentration
Week 13 - 10. Calculating an equilibrium constant, K, from cell potential!
Week 13 - 8. Connecting the worlds of thermodynamics and electrochemistry!
Week 13 - 9. Connecting the dots: the links between equilibria, thermodynamics, and cell voltage!
Week 13 - 7. A practice electrochemical cell problem for you
Week 13 - 5. What are electrode potentials telling us?
Week 13 - 6. Electrochemical cells - putting it all together!
Week 13 - 3. Standard electrode potentials
Week 13 - 4. Using standard electrode potentials
Week 13 - 1. An introduction to electrochemical cell notation
Week 13 - 2. Going from electrochemical cell notation to a cell diagram
Week 12 - 11. An introduction to galvanic (or voltaic) cells
Week 12 - 10. A sample redox equation to balance
Week 12 - 9. Balancing redox equations using the half-reaction approach
Week 12 - 8. Another way to assign oxidation numbers from Lewis structures
Week 12 - 6. Calculating K from ∆Gº
Week 12 - 7. An introduction to electrochemistry (redox rxns and oxidation numbers)
Week 12 - 4 - Can we make diamonds out of carbon dioxide? ∆G tells all!