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Additionally, the effect of co-deposited phosphorus and sulfur atoms on corrosion resistance of electroless nickel deposits was evaluated by electrochemical impedance spectroscopy (EIS).
The morphology of the deposits was evaluated and its influence on the bleomycin responses was discussed.
The morphology of the deposits was evaluated by optical microscopy and by scanning electron microscopy.
The homogeneity of the deposits was evaluated using scanning electron microscope (SEM) and electron microprobe analysis (EMPA).
The electrochemical behavior of such silica deposits was evaluated with six analytes: 3 tetraalkylammonium cations of different sizes, the anionic 4-octylbenzenesulfonate and two poly aminoamide) dendrimers (generation 0 and 1).
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The effect of pH, temperature and the type of activation process on the initial deposition rate, surface morphology and surface elemental analysis of deposits were evaluated.
The Pt loading in the NiGLAD{Pt}/GC deposits was systematically varied by interrupting the deposition at various coverages, and the series of the NiGLAD{Pt}/GC deposits were evaluated as catalysts for the oxygen reduction reaction (ORR) in O2 saturated, 0.1 M HClO4 at room temperature.
The study deposits were evaluated in terms of sedimentology, micromorphology, chemical composition, grain size and magnetic parameters.
Sliding wear resistance of the deposits is evaluated by ball-on-disc tribo-test followed by electron microscopy and Raman spectroscopy of the worn out surfaces.
In this paper the kinematic seismic interaction of single piles embedded in soil deposits is evaluated by focusing the attention on the bending moments induced by the transient motion.
The potential mediated deposition of uranium species was achieved and verified using scanning electron microscopy (SEM) and the solid uranium deposits were evaluated using energy dispersive X-ray emission spectroscopy (EDX).
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