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There are two general statements that describe the behaviour of acidic oxides.
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The equilibrium and kinetic behaviour of weakly acidic resin (WAR) with alkali and weakly basic resin (WBR) with acids have been studied by many research teams.
Polarization and impedance measurements were performed to study the corrosion behaviour of aluminium in acidic and nearly neutral solutions.
The hydrogen bond formation between carboxyl and amide groups has been made clear through the dynamic swelling behaviour of copolymers under acidic conditions.
The electrochemical behaviour of basic and acidic ionic liquids (x 1-butyl-1-methyl-pyrrolidinium chloride-(1 − x 1-butyl-1-methyl-pyrrolidinium.40 was investigated over the temperature range 90–160 °C in respect to the electrochemical deposition of niobium.
An experimental study of the anodic behaviour of nickel in acidic media is carried out by steady state polarization curves and faradaïc impedance measurements as a function of various parameters related to the electrolyte: pH, concentration and the nature of the anions.
The acidic behaviour of many well-known acids (e.g., sulfuric, hydrochloric, nitric, and acetic acids) and the basic properties of well-known hydroxides (e.g., sodium, potassium, and calcium hydroxides) are explained in terms of their ability to yield hydrogen and hydroxide ions, respectively, in solution.
A high surface area (3312 m2 g−1) mesoporous activated carbon was synthesized from chitosan biomass and showed excellent capacitive behaviour in a range of acidic, neutral, and alkaline liquid electrolytes.
Most of the literature concerns the behaviour of glass in aqueous acidic solutions.
It also includes analogous behaviour of molecules and ions that are acidic but do not donate hydrogen ions (aluminum chloride, AlCl3, and the silver ion AG+).
Two micro-electrode techniques, scanning electrochemical microscopy (SECM) and the micro-capillary cell (MCC) technique, were used to investigate corrosion behaviour of a polycrystalline iron surface in acidic sulphate media.
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