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The microstructure and topography of the anodic films were examined using SEM and AFM, and the adhesive strength and corrosion behavior were studied with lap-shear test, wedge test and electrochemical technology.
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Adsorption behavior was studied with total organic carbon analyzer and inductive coupled plasma emission spectrometer.
The post buckling behavior is studied with varying the number of optimally located PFCPs using modified Newton Raphson method.
Corrosion behavior was studied with 3.5 wt% NaCl solution at room temperature in a static electrolyte condition.
Their behavior was studied with impedance spectroscopy and cyclic voltammetry at low scan rates and compared to the current benchmark electrolytes based on propylene carbonate (PC) and acetonitrile (AN).
Using a traditional approach, the spiking behavior is studied with a step protocol.
The effects of salt concentration and molecular weights of the copolymers on the viscometric behavior were studied and compared with published data for sulfonated polystyrene.
High-temperature nanofluids with the addition of different kinds of nanoparticles to a binary salt (NaNO3-KNO3 with a 60 40 ratio) with PCM behavior were studied.
Its conductivity behavior was studied and compared with those of singly doped ceria electrolytes Ce0.9Mg0.1O1.9 (CM10) and Ce0.9Gd0.1O1.95 (CGO).
Algorithm is put into run, and convergence behavior is studied and compared with the operator retrieved.
Structural conformation and behavior are studied and compared with the nuclear magnetic resonance (NMR -derived segmeNMR -derivedQZ.pdb).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com