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All of the synthesized solids were identified as jarosite-type compounds.
Solids were identified using X-ray diffraction (XRD) analysis and scanning electron microscope (SEM) images.
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The loading rate of the organic solids was identified as one of the parameters potentially responsible for the effect.
After centrifugation, the supernatant was decanted, and the remaining solid was identified to be 99mTc-BN-PEG.
The residual solid was identified by DRX and SEM EDS as KFe3[ SO4 2 − X(CrO4 X](OH 6; with no evidence of the formation of secondary phases.
In addition, pre-percolation threshold, percolation threshold and full connectivity of the solid phase were identified.
The solid residues were identified by FT-IR and XRD analysis as amorphous Fe(OH 3 (Fig. 7a).
Mass spectrometry was used to analyze gaseous oxidation products and solid products were identified by the XRD technique.
Apart from the type of steel, the presence of oxygen plays the second most important role for steel corrosion and subsequent pore clogging: While in the presence of oxygen, several solid phases were identified to form in the pores of the rock (Fe-hydroxides and Cu(0)), in anoxic experiments only Cu(0) was detected (Fig. 5).
The first solid CSCs were identified in breast cancer by Al-Hajj et al. in 2003 with two surface markers CD44+/CD24−/low [ 74].
Representative areas of solid tumours were identified in HE-stained sections of the selected tumour cases and a 2 mm-in-diameter tissue core per donor block was punched out and transferred to a recipient block with a maximum of 48 cores using a Tissue Microarrayer (AZUMAYA KIN-1, Japan).
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