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The aim of solution is mainly against the velocity potential of the potential flow.
The uniform corrosion revealed in 0.5 M H2SO4 solution is mainly determined by the microstructural characteristics of the coating.
This solution is mainly characterised by a fluidised bed reactor in which hot flue gas is treated both chemically and mechanically.
The existence of uniqueness of positive solution is mainly obtained by fixed point theorem of mixed monotone operator and the positive solution of equation system is dependent on λ.
The impedance of the Agy:TiNx films in synthetic sweat solution is mainly ruled by the roughness/porosity variation, thus the higher the N/Ti atomic ratio, the lower the impedance.
Only sulfate anions are responsible for the electric transport inside the membrane in contact with 0.1 M sulfuric acid notwithstanding the fact that the bulk solution is mainly occupied by bisulfate counter-ions (about 90%) and the membrane contains both quaternary amines and pyridinium cations as fixed ionic groups.
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The fractions remaining in the solution were mainly composed of organic material particularly rich in aromatic and aliphatic groups, while the inorganic phase contained phyllosilicates.
This observation indicated that the corrosion of mild steel in 1 M H2SO4 solution was mainly controlled by a charge-transfer process.
It was found that the pH values of the pore solution were mainly decreased in 15 days and the correlation between the pore solution pH and the carbonated period seemed to be almost linear in 15 days.
IgG molecules are simplified as small balls in the solution; the position, velocity, and acceleration of which in the solution are mainly determined by the electrostatic force between biomolecules, electrostatic force generated by the applied electric field, and van der Waltz force among the molecules (rather smaller).
The rest of the extract solution was mainly caprylic acid.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com