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The very low solubility is caused by the relatively high energy of their molecular crystal lattice ( as measured by AGT , the free energy change during lattice destruction ) and the Table 6. Thermodynamic parameters of ancillary ...
The very low solubility is caused by the relatively high energy of their molecular crystal lattice ( as measured by AGT , the free energy change during lattice destruction ) and the Table 6. Thermodynamic parameters of ancillary ...
Trang 646
The solubility with increasing R changes according to the crystal lattice energy and the conformational component ( AG conr ) . It increases by 300 times for -C16H33 . The solubility and thermodynamic parameters of dissolution change ...
The solubility with increasing R changes according to the crystal lattice energy and the conformational component ( AG conr ) . It increases by 300 times for -C16H33 . The solubility and thermodynamic parameters of dissolution change ...
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nH2O ( M Mn2 + , Ni2 + ) , kJ mol - 1 Eqn . ( 1 ) Crystal lattice energy , LJ mol- ' Kapustinski method Born - Haber r ( according to Goldschmidt ) ( according to Belov - Beck ) cycle m21 2248 2252 1981 2010 2000 2070 2115 2085 2403 ...
nH2O ( M Mn2 + , Ni2 + ) , kJ mol - 1 Eqn . ( 1 ) Crystal lattice energy , LJ mol- ' Kapustinski method Born - Haber r ( according to Goldschmidt ) ( according to Belov - Beck ) cycle m21 2248 2252 1981 2010 2000 2070 2115 2085 2403 ...
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Contents | 605 |
N Shchegrov N M Antraptseva N V Ryabtseva | 612 |
S A Onorin V V Volkhin M B Khodyashev N D Zakhorov T A Denisova | 620 |
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ABSTRACT according acid activity addition analysis angles anion appearance aqueous solutions atoms bands bond calculated carried cations characteristic Chem chemical Chemistry chloride complexes components composition compounds concentration constants containing coordination copper corresponding crystal crystallisation curves decomposition decrease dependence described determined effect electron energy English translation equilibrium ether experimental extraction Figure formation formed given gives groups heating hydrate hydrogen increase indicates Inorg ions Khim Khimii leads ligand lines mass materials measured metal method mixture molecules Moscow Neorg nitrate observed obtained oxide oxygen parameters phase points positions possible precipitate prepared present properties published range ratio reaction References region respectively Russian salt shows similar solid solutions solubility solution specimens spectra spectrum stability structure studied surface synthesis Table temperature thermal translation in Russ values X-ray diffraction