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The materials are analyzed by scanning and transmission electron microscopy, X-ray diffraction, and visual light spectrometry.
A new means of assessing dispersion stability of CNTs within a Watts electrolyte via visible light spectrometry is outlined and used to demonstrate the extent of improved dispersibility of CNTs when subjected to a well-known surface modifying acid-treatment.
In short, an optical fiber probe, incorporating both the laser Doppler and the broadband light spectrometry technique, records the local oxygen supply parameters, the oxygen saturation of hemoglobin, the relative postcapillary venous filling pressures, and the blood flow velocity.
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Investigations by emission light spectroscopy and mass spectrometry at gas mixture variations between the plasma compounds H2, N2, NH3 and SiH4 are presented to get information about the processes taking place in a silicon nitride deposition with the Plasmodul® out of the monomers NH3 and SiH4.
matrix assisted laser desorption/ionization-time off light mass spectrometry.
The ultraviolet visible light absorbance spectrometry (UV vis) and photoluminescence spectrophotometry (PL) demonstrate well dispersibility and excellent optical performance of Cu-ZnO hybrid nanoparticles both in organic and aqueous solvent.
Proteins were identified either by peptide mass fingerprinting using matrix assisted laser desorption ionization-time of light mass spectrometry (MALDI-TOFMS) or by peptide sequencing.
For the determination of O2 saturation of Hb (SO2Hb) and relative Hb concentration (rHb), white-light tissue spectrometry was utilised: SO2Hb is identified by the colour of Hb, as the degree of molecular SO2Hb relates to a certain colour.
The Cu2+-loaded PAA/PDDA multilayer films and those doped with in-situ Cu(OH 2 nanoparticles were characterized by means of ultraviolet visible light (UV vis) absorption spectrometry, X-ray photoelectron spectroscopy (XPS), atomic force microscopy (AFM), and scanning electron microscopy (SEM).
Fragments of the garden gateposts have been sampled for detailed analysis, including portable x-ray fluorescence spectrometry, light microscopy, and scanning electron microscopy/x-ray microanalysis.
A variety of characterization techniques have been adopted for polymer nanocomposites such as X-ray diffraction and spectrometry, light and electron microscopy, thermogravimetric analysis, nuclear magnetic resonance, and mass spectroscopy with relevant specific measuring instruments for achieved/intended property.
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