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The machines still work best with smaller components and take considerable X-ray power to penetrate denser materials.
X-ray power diffraction.
Dense z-pinches produced by 100 ns implosions of wire arrays or gas puffs produce substantial soft X-ray power.
The quartz content (QC) was determined using X-ray power diffraction (XRD) to calculate the ESR signal intensity of quartz.
Supported catalysts were characterized by BET-specific surface area, X-ray power diffraction (XRD), pore volume, and pore size distribution.
The morphology and phase structures were characterized by scanning electron microscopy and X-ray power diffraction, respectively.
The formation of these powders was confirmed by X-ray power diffraction (XRD) and transmission electron microscopy (TEM).
The final product was characterized by X-ray power diffraction (XRD), transmission electron microscopy (TEM), Fourier transform infrared spectra (FTIR) and UV visible absorption and fluorescence emission.
The as-prepared products were characterized by X-ray power diffraction (XRD), field emission scanning electron microscopy (FESEM), and transmission electron microscopy (TEM).
The duration of this emission is a few times the laser pulse duration and high average X-ray power can be achieved.
X-ray power diffractometer (RigakuD/max 2500) with Cu Kα radiation (λ = 0.154056 nm) was performed to determine the bulk crystalline phase of the catalyst.
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