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PH 3.9 4.0 4.2 3.8 4.0 4.2 4.5 This is because the Th ++ cations do not form stable complexes with the cations mentioned , and , as a result , their introduction into aqueous solutions does not appreciably alter the proportion of the ...
PH 3.9 4.0 4.2 3.8 4.0 4.2 4.5 This is because the Th ++ cations do not form stable complexes with the cations mentioned , and , as a result , their introduction into aqueous solutions does not appreciably alter the proportion of the ...
Trang 546
Thus , the crystal structure of an E [ MA3 ] depends more on the position of the outer - sphere cation in the row of ... the same temperatures as for the derivatives of the largest cations of the heavy alkali elements ( Rb + , Cs * ) .
Thus , the crystal structure of an E [ MA3 ] depends more on the position of the outer - sphere cation in the row of ... the same temperatures as for the derivatives of the largest cations of the heavy alkali elements ( Rb + , Cs * ) .
Trang 577
When the monoatomic sublattice of ammonium cations is changed by a heteroatomic one , in which a half of the NH cations is substituted by the Li + cations , a transformation of the spectra is observed .
When the monoatomic sublattice of ammonium cations is changed by a heteroatomic one , in which a half of the NH cations is substituted by the Li + cations , a transformation of the spectra is observed .
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Vol 41 No 1 | 1 |
Synthesis and Characterization | 7 |
Deviation from Stoichiometry in Mercury Chalcochromite HgCr₂Se4 | 23 |
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absorption according acid addition analysis angles anions aqueous atoms band bismuth bond bridging calculated carbon cations changes Chem chemical Chemistry chloride cm-¹ complexes composition compounds concentration constants containing coordination Copyright corresponding crystal curves decrease dependence determined distances effect electron elements energy equation equilibrium experimental extraction formation frequency function H₂O heating higher hydrogen increase indicates Inorganic interaction ions Journal Khim ligands measured melting metal method mixture mol/l molecules Moscow Neorg observed obtained occur organic oxidation oxygen atoms parameters peak peritectic phase Physics points position possible prepared present properties Publishing range ratio reaction REFERENCES region respectively Russian salts samples Sciences shows similar sodium solid solutions space group spectra spectrum stability structure studied synthesis Table temperature thermal tion Translation unit values vibrations X-ray diffraction