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( GaCl , ) ( gas ) + ( PCIs ) ( gas ) + ( Cl2 ) ( gas ) • ( 1 ) To study the dissociation in detail , the complex was synthesised in a special ampoule , and its melting point was verified thermographically . At non - stoichiometric com- ...
( GaCl , ) ( gas ) + ( PCIs ) ( gas ) + ( Cl2 ) ( gas ) • ( 1 ) To study the dissociation in detail , the complex was synthesised in a special ampoule , and its melting point was verified thermographically . At non - stoichiometric com- ...
Trang 1583
Salt mixtures of the desired concentration were sub- jected to horizontal zone melting by the method described earlier . The least initial concentration of the impurity component was 0.5 % . To ensure that the crystallisation took place ...
Salt mixtures of the desired concentration were sub- jected to horizontal zone melting by the method described earlier . The least initial concentration of the impurity component was 0.5 % . To ensure that the crystallisation took place ...
Trang 1719
Eqn . ( 4 ) is solved by Newton's iterative method , with a successive drop in temperature from the melting point at 20 K intervals . The value thus found for x - the mole fraction of the readily melting component in the binary system ...
Eqn . ( 4 ) is solved by Newton's iterative method , with a successive drop in temperature from the melting point at 20 K intervals . The value thus found for x - the mole fraction of the readily melting component in the binary system ...
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absorption acid activation addition analysis anion aqueous atoms bands bond calculated carried Chem chemical Chemistry chloride complex complex formation components composition compounds concentration constant containing coordination corresponding crystallisation crystals curves decomposition decrease density dependence described determined diagram effect equation equilibrium experimental extraction Figure formation formed given gives H₂O heating hydrogen increase indicates influence infrared initial Inorg interaction ions isotherms Khim leads ligand liquid mass measured melting metal method MICHIGAN mixture mole molecules Moscow Neorg nitrate observed obtained organic oxide parameters phase position possible precipitate prepared present properties published pure range ratio reaction Received REFERENCES region respectively Russ salts shows solid phases solid solutions solubility solvent specimens spectra spectrum stability structure studied Table takes temperature thermal tion Translated from Zhurnal values X-ray diffraction Zhur Zhurnal Neorganicheskoi Khimii