Russian Journal of Inorganic Chemistry, Tập 4,Trang 659-1328Chemical Society., 1959 |
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Trang 776
... increase in its electron density or an increase in the lability of its electrons . With single - atom ligands this pro- cess will be accompanied simply by an increase in their mobility ; in more complex ligands the result will depend on ...
... increase in its electron density or an increase in the lability of its electrons . With single - atom ligands this pro- cess will be accompanied simply by an increase in their mobility ; in more complex ligands the result will depend on ...
Trang 939
... increase in the specific conduc- tance . Replacement of silica by any one of these oxides also leads to an increase in the specific conductance of the melt . Replacement of FeO by CaO or MgO leads first to a small rise in the specific ...
... increase in the specific conduc- tance . Replacement of silica by any one of these oxides also leads to an increase in the specific conductance of the melt . Replacement of FeO by CaO or MgO leads first to a small rise in the specific ...
Trang 971
... increases with increase in temperature , the increase being smaller the slower the decrease in viscosity , that is at low hydroxide concentrations . The temperature coefficients of K and increase with increase in concentration ( Fig . 7 ) ...
... increases with increase in temperature , the increase being smaller the slower the decrease in viscosity , that is at low hydroxide concentrations . The temperature coefficients of K and increase with increase in concentration ( Fig . 7 ) ...
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Trends in research in inorganic chemistry | 665 |
The formation of NaO₂ from Na₂O₂ 2H₂O₂ | 671 |
Gluconic acid complexes of lanthanum | 678 |
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2H₂O absorption acetone acid Akad AlBr alcohol alkali alloys aluminium ammonium analysis anion annealed anorg aqueous solutions atoms beryllium calculated cation cerium Chem chemical Chemistry chloride coefficient complex compounds composition concentration conductance containing coprecipitation corresponding crystallisation crystals curve decomposition determined diagram dioxan electrons equilibrium ethanol ether eutectic experimental formation formed glaserite H₂O heating HNO3 hydration hydrogen hydrolysis hydroxide increase indium ionic ions isotherms ketone Khim lattice Li₂SO ligands liquid melting metal method mixture molal molar mole molecules Na,SO Na₂SO NaCl NaOH Nauk SSSR Neorg Obshch obtained oxalate oxide Physicochemical platinum potassium precipitate prepared pyridine ratio reaction ruthenium salt saturated sections shows sodium solid phase solid solutions solu solubility solvent stability structure studied sulphate Table temperature ternary system thermal thermogram thorium tion trans effect uranyl nitrate values vapour pressure X-ray Zhur