Explores the proposed mechanism of CO2 reduction by FeNi-CODH and the selective 2-electron CO2 reduction to CO, highlighting the role of hydrogen bonding.
Explores CMOS circuits for metabolites detection in fixed-voltage cells, covering operational amplifier features, saturation risks, temperature compensation, and current measurement techniques.
Covers solutions to a practice exam in advanced general chemistry, including electron configurations, energy changes, redox reactions, equilibrium shifts, and solubility.
Covers the fundamentals of electrochemistry, focusing on cell potential, current production, and the relationship between current and reactant conversion.