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The results show that the samples exhibit cauliflower-like hierarchical microstructures.
Raman results show that the samples formed binary clathrate hydrate of hydrogen and each organic compound.
These studies show that the samples of C3N and CMSs both possess multi-layered turbostratic graphitic structures.
Both DSC and dynamic TG results show that the samples are thermal degraded easily after grafting the lactic and/or glycolic acid.
Electrochemical tests show that the samples using humic acid and glucose as reduction agents have better cyclic performance than the one using carbon as reduction agent.
The results show that the samples treated by SMAT and CSP exhibit similar trends of cyclic stress amplitude evolution, and higher mechanical strength than the untreated samples.
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X-ray diffraction patterns show that the sample is amorphous.
We will first show that the sampling conditions on accomplishing sampled-data perturbed consensus and perturbed output regulation separately.
The results show that the sample spacing has a strong effect on the shape and movement of the flame.
The anisotropy patterns recorded for the bare CMT surface show that the sample is a vicinal {100} face.
The results show that the sampling is unbiased in that aspect.
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