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In general, the estimation of higher order spectra becomes progressively unreliable as the order increases.
As a result, the energy bandgap of luminescence spectra becomes wider.
After annealing, the difference between TPP and Au/TPP luminescence spectra becomes more pronounced (the intensity increases twice).
The peak shown in the derivative LFA spectra becomes wider with increasing stress and moves to higher field, corresponding to the magnetization process.
Outside the enclosure it was noticed that neutron spectra becomes "softer" as the concrete thickness increases due to reduction of mean neutron energy.
However, if the plasma treatment is elongated, the few-layer graphene sheet can be thinned and the evolution of Raman spectra becomes complicated.
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We find that these spectra become softer and are consistent with the Kolmogorov-scaling.
The FFT spectra became dimmer due to the density reduction with the increased thicknesses.
Away from the intense band, the PL spectra become broader and lower.
As caffeic acid concentrations increased, UV-visible spectra became broader with a red-shift.
After that, the PL spectra become asymmetric again but with a shoulder on the higher-energy side.
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