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Its peak power density is 24.33 mW/m3.
The peak power density delivered is 0.57 mW cm−2.
Furthermore, the peak power density of an H2/O2 single fuel cells reaches high peak power density of 416 mW cm−2 at 0.514 V.
Peak power density of the optimized cell is 112 mW cm−2.
The device exhibits a peak power density of 70 mW cm−2 at room temperature.
The BH4− concentration boundary layer limits peak power density, despite migration and fuel utilizations below 10%.
A high peak power density was obtained at a low duty cycle.
The hardness increased with decreasing duty cycle and increasing peak power density.
The peak power density increased to 1.60 kW cm− 2 as duty cycle decreased to 3.5%.
Specifically, there is a 17.8% increment in the peak power density due to the use of WSFF.
Also, the peak power density of the reactor exceeded the limit of that for the PBMR design.
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