Power Density

Design of a 2.45 GHz rectenna for electromagnetic (EM) energy scavenging

Microstrip Antennas / Energy Harvesting / Patch Size / Polarisation / Tidal power density / PATCH ANTENNA / Rectenna / Conversion Efficiency / Harmonic Balance / Power Density / PATCH ANTENNA / Rectenna / Conversion Efficiency / Harmonic Balance / Power Density

Design of a 2.45 GHz rectenna for electromagnetic (EM) energy scavenging

Microstrip Antennas / Energy Harvesting / Patch Size / Polarisation / Tidal power density / PATCH ANTENNA / Rectenna / Conversion Efficiency / Harmonic Balance / Power Density / PATCH ANTENNA / Rectenna / Conversion Efficiency / Harmonic Balance / Power Density

Simultaneous recording of electroencephalographic data in musicians playing in ensemble

Cognitive Science / Music / Personality / Electroencephalography / Music Performance / Empathy / High Frequency / Humans / Cerebral Cortex / Male / Cortex / Middle Aged / Adult / Motor Performance / Boolean Satisfiability / Resting State / Cooperative Behavior / Neurosciences / Alpha Rhythm / Low Resolution / Power Density / Empathy / High Frequency / Humans / Cerebral Cortex / Male / Cortex / Middle Aged / Adult / Motor Performance / Boolean Satisfiability / Resting State / Cooperative Behavior / Neurosciences / Alpha Rhythm / Low Resolution / Power Density

A one-compartment fructose/air biological fuel cell based on direct electron transfer

Analytical Chemistry / Biomedical Engineering / Biosensors / Electrochemistry / Carbon Nanotube / Ionic Liquid / Nanotechnology / Fuel Cell / Ionic Liquids / Air / Electron Transfer / Electron Transport / Fructose / High performance / Oxygen Reduction / BioSensors / Electrodes / Equipment Design / Equipment Failure Analysis / Open Circuit Voltage / Power Density / Ionic Liquid / Nanotechnology / Fuel Cell / Ionic Liquids / Air / Electron Transfer / Electron Transport / Fructose / High performance / Oxygen Reduction / BioSensors / Electrodes / Equipment Design / Equipment Failure Analysis / Open Circuit Voltage / Power Density

Three-dimensional, gas phase fuel cell with a laccase biocathode

Engineering / Fuel Cell / Air flow / Methanol / Ethanol / Laccase / Enzyme / CHEMICAL SCIENCES / Three Dimensional / Carbon Fiber / Gas Flow / Power Sources / Power Density / Laccase / Enzyme / CHEMICAL SCIENCES / Three Dimensional / Carbon Fiber / Gas Flow / Power Sources / Power Density

Three-dimensional, Gas Phase Fuel Cell with a Laccase Biocathode

Engineering / Fuel Cell / Air flow / Methanol / Ethanol / Laccase / Enzyme / CHEMICAL SCIENCES / Three Dimensional / Carbon Fiber / Gas Flow / Power Sources / Power Density / Laccase / Enzyme / CHEMICAL SCIENCES / Three Dimensional / Carbon Fiber / Gas Flow / Power Sources / Power Density

Micro Solid Oxide Fuel Cells on Glass Ceramic Substrates

Engineering / Glass / Impedance Spectroscopy / Thin Films / Ceramics / Advanced Functional Materials / Thin Film / Physical sciences / Solid oxide fuel cell / Iron Oxide / CHEMICAL SCIENCES / Tidal power density / Microstructures / Advanced / Spray Pyrolysis / Electric Conductivity / Direct Current / Power Density / Advanced Functional Materials / Thin Film / Physical sciences / Solid oxide fuel cell / Iron Oxide / CHEMICAL SCIENCES / Tidal power density / Microstructures / Advanced / Spray Pyrolysis / Electric Conductivity / Direct Current / Power Density

Micro Solid Oxide Fuel Cells on Glass Ceramic Substrates

Engineering / Glass / Impedance Spectroscopy / Thin Films / Ceramics / Advanced Functional Materials / Thin Film / Physical sciences / Solid oxide fuel cell / Iron Oxide / CHEMICAL SCIENCES / Tidal power density / Microstructures / Advanced / Spray Pyrolysis / Electric Conductivity / Direct Current / Power Density / Advanced Functional Materials / Thin Film / Physical sciences / Solid oxide fuel cell / Iron Oxide / CHEMICAL SCIENCES / Tidal power density / Microstructures / Advanced / Spray Pyrolysis / Electric Conductivity / Direct Current / Power Density

Improved fuel use efficiency in microchannel direct methanol fuel cells using a hydrophilic macroporous layer

Engineering / MEMS / Performance / Catalyst / Methanol / Mass Transport / CHEMICAL SCIENCES / Silicon Wafer / Room Temperature / Flow Rate / Aqueous Solution / Anode / Power Sources / Power Density / Mass Transport / CHEMICAL SCIENCES / Silicon Wafer / Room Temperature / Flow Rate / Aqueous Solution / Anode / Power Sources / Power Density
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