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Related lectures (32)
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Energy Conversion Systems: Composite Curves
Explains the use of composite curves in defining energy conversion systems and optimizing efficiency in industrial processes.
Exergy and Electrical Motors: Fuel Cell Insights
Discusses exergy, electrical motors, and introduces fuel cells, focusing on their efficiency and operational principles.
Electrochemistry: Experiments
Explores electrochemistry through experiments with concentration cells, conventional cells, and a fuel cell.
Electrolyzers and Fuel Cells
Explores the synthesis of nanoparticles for energy applications, emphasizing electrolyzers and fuel cells.
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.
Energy Systems Simulation and Optimization
By Prof. François Marechal covers the simulation and optimization of energy systems in industrial processes, waste, resources, and energy conversion.
Making a City Energy Self-Sufficient
Delves into reducing urban energy consumption through innovative solutions using CO2, fuel cells, solar energy, and waste.
N-doped Graphene Membrane: Proton Exchange & Fuel Cells
Explores N-doped graphene membranes for proton exchange in fuel cells, focusing on performance and fabrication.
3D FIB/SEM Volume Reconstruction
Explores 3D volume reconstruction using FIB/SEM microscopy, particle recognition, edge detection, watershed separation, and quantitative microstructure analysis.
Micro Turbo Machines for Energy Efficiency
Explores small turbo machines for energy efficiency in heat pumps and decentralized electricity generation, with potential significant impact on the energy transition.