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To investigate the interesting phenomena, we utilized the material spectrum analyses to find out the reason of working current reduction and better stability.
As can be observed, the activated carbon spectrum exhibited less absorption bands than raw material spectrum, indicating that some functional groups present in the raw material disappeared after the carbonization and activation steps.
The asymptotic eigensolutions allow an accurate sensitivity analysis of the material spectrum under variation of the key physical parameters, including the cell aspect ratio, the ligament slenderness and the spatial ring density.
The chemical nature of these spectra is illustrated in Fig. 7a, in which also a Si 2 p spectrum is shown, which was recorded in a separate experiment from pure substrate material (spectrum (e)).
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After that, we utilize material spectra analyses to find out the reason for better performance.
To identify the polishing material, spectra of the ref-collection samples (n = 37) were peak-normalized at ~1026 cm−1.
It was also noticed that some of these pure material spectra have the same band positions found in the resin composite spectra but with sharper and more intense peaks in the low molecular size pure materials.
Hence, the hyperspectral unmixing, which decomposes a mixed pixel into a combination of pure material spectra known as endmembers, weighted by their corresponding abundance coefficients, is a challenging task.
The triboelectric nanogenerator (TENG) has attracted enormous amount of attention in the research community in recent years because of its simple design, high energy conversion efficiency, broad application areas, a wide materials spectrum, and low-temperature easy fabrication.
FT-IR spectra of ES powder showed characteristic bands of calcium carbonate and processed materials spectra indicated no changes on the functional groups compared to non-processed materials.
This paper describes one such tool colloquially known as the stress-cubed (or cubic) rule, and provides examples of its application to a number of materials, spectra and stress concentrations.
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CEO of Professional Science Editing for Scientists @ prosciediting.com