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The binding of glutaminyl-tRNA synthetase from Escherichia coli to several ligands, including the natural substrates, was analyzed.
The SERS performance of these substrates was analyzed by studying its reproducibility, repeatability and signal enhancement measured from p-aminothiophenol (p-ATP) covalently bonded to the substrate.
The large difference in critical strain of the SiO2 layer on the two substrates was analyzed using an energy release rate approach, and found to result from differences in layer/substrate mechanical contrast and in internal stress state.
In this work the elemental distribution in γ-GPS films coated on low carbon steel substrates was analyzed by an energy dispersive X-ray spectrometer (EDX), and the effect of curing temperature and solution concentration on the chemical structures of this silane was also carried out with reflection absorption infrared (RAIR) spectroscopy.
Before using this material as a binder of the CNT emitters, the adhesion behavior of the material at different substrates was analyzed.
Chemical composition of the seeded substrates was analyzed using an energy dispersive X-ray (EDX) spectroscopy as attached on the SEM.
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The SCD CVD substrates were analyzed with different characterization techniques.
The pretreated substrates were analyzed for chemical composition, and their enzymatic digestibility was investigated and compared.
The proposed lateral power structure integrated on SOS substrates is analyzed by electro-thermal simulations.
The effects of different pretreatments on the adhesion strength between the films and substrates were analyzed.
The solid substrates were analyzed via X-ray diffraction, transmission electron microscopy and energy dispersive spectroscopy.
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