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As in the case of the crystal hydrate Ba Zr04.1.7H2O the R value decreases with the growth of the water content , which Table 7. Positional and thermal parameters of the Ba Zr04 · 1.7H2O structure is most likely indicative of the ...
As in the case of the crystal hydrate Ba Zr04.1.7H2O the R value decreases with the growth of the water content , which Table 7. Positional and thermal parameters of the Ba Zr04 · 1.7H2O structure is most likely indicative of the ...
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It should be noted that upon absorbing water , the oxide Ba Zr0 , transforms immediately into the crystal hydrate with the maximum water content ( Fig . 1 ) . The Ba Zr04.1.7H2O structure appeared to be impossible , since one could not ...
It should be noted that upon absorbing water , the oxide Ba Zr0 , transforms immediately into the crystal hydrate with the maximum water content ( Fig . 1 ) . The Ba Zr04.1.7H2O structure appeared to be impossible , since one could not ...
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4 W 3 row W 18 2 Absorption , % ما pseudoplane of the symmetry ; it is thus reasonable to believe their crystal structure is pseudomonoclinic . To study the properties of the binary hydrophosphates prepared , we determined their ...
4 W 3 row W 18 2 Absorption , % ما pseudoplane of the symmetry ; it is thus reasonable to believe their crystal structure is pseudomonoclinic . To study the properties of the binary hydrophosphates prepared , we determined their ...
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HIGHTEMPERATURE SUPERCONDUCTORS | 526 |
On Possible Structural Transformations during the Thermal Decomposition of Potassium Permanganate | 539 |
Ba ZrO4 and Its Crystallohydrates | 553 |
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absorption according acid allows analysis angles anion aqueous atoms band binary bond calculated cations Chem chemical Chemistry complexes components composition compounds concentration constant containing coordination Copyright corresponding crystal curves decrease dependence described determined distances effect electron elements energy equal equilibrium experimental formation heating increase initial Inorganic intensity interaction Interperiodica ions Khim Khimii layer leads ligand lines mass measured melting metal method mixture mol/l molecules Moscow Neorg observed obtained occurs Original oxide oxygen atoms parameters patterns phase phosphates points position possible potassium precipitate prepared present properties range ratio reaction REFERENCES reflections region respectively Russian salt samples shows similar solid solubility solutions space group spectra spectrum stability structure studied synthesis Table temperature thermal tion values vibrations X-ray diffraction