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Lecture
Batteries, Fuel Cells and Electrolysis: Efficiency
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Electrochemical Thermodynamics: Efficiency and Potentials
Explores electrochemical thermodynamics, efficiency, potentials, and their practical applications in fuel cells and non-standard conditions.
Fuel Cell: Thermodynamics
Explores the thermodynamics of fuel cells, including reactions, variables, and reversible/irreversible cases.
Thermodynamic Energy Conversion: Chemical to Electrical
Explores the conversion of chemical energy into electrical work and the derivation of Gibbs free energy.
Batteries, Fuel Cells and Electrolysis
Covers the polymer membrane fuel cell and compares low-temperature hydrogen platinum fuel cells with high-temperature hydrocarbons using nickel.
Exergy and Electrical Motors: Fuel Cell Insights
Discusses exergy, electrical motors, and introduces fuel cells, focusing on their efficiency and operational principles.
Batteries, Fuel Cells and Electrolysis: Advantages
Explores fuel cell characteristics, efficiency, emissions, and performance compared to combustion, emphasizing advantages and challenges in the field.
Batteries, fuel cells and electrolysis - Introduction
Covers the operating principles and efficiency of fuel cells and their applications.
Electrochemistry Fundamentals
Delves into concentration cells, solubility products, half-cell potentials, and practical electrochemistry applications, including electrolysis and corrosion prevention.
Batteries, fuel cells and electrolysis: Electrolysis
Covers challenges in electricity storage, thermodynamics of electrolysis, different electrolysis technologies, and sustainable fuel production.
Electrochemical Reactions
Explores electrochemical reactions, including electrolysis of NaCl, anodic and cathodic reactions, production rates, and current efficiency.