Explores electrochemistry, emphasizing redox reactions and cell potential in galvanic cells, Nernst and Faraday's laws, and their applications in electrolysis and fuel cells.
Delves into concentration cells, solubility products, half-cell potentials, and practical electrochemistry applications, including electrolysis and corrosion prevention.
Delves into concentration cells, solubility products, half-cell potentials, and electrochemical applications, including corrosion prevention and fuel cells.
Covers the fundamentals of electrochemistry, focusing on cell potential, current production, and the relationship between current and reactant conversion.
Explores the principles of batteries and fuel cells, focusing on their operation and components, illustrated using a classic car battery as an example.
Discusses losses in batteries, fuel cells, and electrolysis, as well as fuel cell electrical efficiency and a comparison between hydrogen and methane fuel cells.