Russian Journal of Inorganic Chemistry, Tập 30,Số phát hành 7-12British Library Lending Division with the cooperation of the Royal Society of Chemistry, 1985 |
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Trang 1191
... increase in the lithium concentration there is a greater change in electrical resistivity during the decomposition , due to the increase in the degree of disorder and an increase in the concentration of electrically active defects ...
... increase in the lithium concentration there is a greater change in electrical resistivity during the decomposition , due to the increase in the degree of disorder and an increase in the concentration of electrically active defects ...
Trang 1265
... increase in temperature and increase in the total degree of decomposition of K2CO3.3H2O2 , the contribution of the irreversible decomposition increases , reaching 85 % at 80 ° C , whereas the degree of decomposition via the reversible ...
... increase in temperature and increase in the total degree of decomposition of K2CO3.3H2O2 , the contribution of the irreversible decomposition increases , reaching 85 % at 80 ° C , whereas the degree of decomposition via the reversible ...
Trang 1590
... increase in the ratio F- : A13 + to 2 : 1 ( product f ) leads to the formation of another substance , probably Al ( OH ) F2 . .nH20 , that is there is an increase in the probability of formation of inner - sphere hydroxofluoro ...
... increase in the ratio F- : A13 + to 2 : 1 ( product f ) leads to the formation of another substance , probably Al ( OH ) F2 . .nH20 , that is there is an increase in the probability of formation of inner - sphere hydroxofluoro ...
Nội dung
The reaction of RuO2 with vanadium oxides | 934 |
Characteristic interatomic interactions in solid solutions | 940 |
The hydrothermal synthesis of bismuth oxide chlorides | 948 |
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acid addition analysis anion apparently aqueous atoms bands bismuth bond calculated carried cations characteristic Chem chemical Chemistry chloride complexes components composition compounds concentration confirmed constant containing coordination corresponding crystallisation crystals curves decomposition decrease dependence described determined diagram effect electron energy equilibrium experimental extraction Figure formation formed given gives groups heating hydrated hydrogen increase indicates infrared ions Khimii leads ligand liquid mass measured melts metal method mixture mole molecules Moscow nitrate observed obtained organic oxide oxygen parameters patterns phase points position possible prepared present properties published pure range ratio reaction Received recorded REFERENCES respectively Russ.J salts shows sodium solid phases solid solutions solubility specimens spectra spectrum stability structure studied surface synthesis Table takes temperature thermal tion Translated from Zhurnal values vibrations X-ray diffraction Zhur.Neorg.Khim Zhurnal Neorganicheskoi