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Bond lengths and selected second , less occupied positions of the corresponding bond and torsion angles are presented in Tables 2–4 . disordered atoms . Their coordinates , thermal parame- The data in Table 1 show that the coordinates ...
Bond lengths and selected second , less occupied positions of the corresponding bond and torsion angles are presented in Tables 2–4 . disordered atoms . Their coordinates , thermal parame- The data in Table 1 show that the coordinates ...
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For convenient comparison of the conformations of cryptand ligands A and B , the t angles are presented not for cryptand ligand B but for its mirror isomer B * , which is presented in the structure of I in an equal amount . . atom ...
For convenient comparison of the conformations of cryptand ligands A and B , the t angles are presented not for cryptand ligand B but for its mirror isomer B * , which is presented in the structure of I in an equal amount . . atom ...
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... mechanical action , and ( d ) polyethylene activated by the The luminescence spectra of the polyethylene sameuropium compound after 2.5 min of mechanical activation . ples activated by the europium compounds are presented in Fig .
... mechanical action , and ( d ) polyethylene activated by the The luminescence spectra of the polyethylene sameuropium compound after 2.5 min of mechanical activation . ples activated by the europium compounds are presented in Fig .
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Vol 48 No 9 | 1280 |
Simultaneous English language translation of the journal is available from MAIK NaukaInterperiodica Russia | 1446 |
Vol 48 No 11 2003 | 1615 |
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absorption acid activation analysis angles anions atoms band bismuth bond bond lengths calculated cations Chem chemical Chemistry complex components composition compounds concentration constant containing coordination Copyright corresponding crystal crystal structure curves decreases determined diagram distances effect electronic energy experimental field formation formed heating hydrogen increases Inorganic intensity interaction ions Khim layer ligand Mater measured melting metal method mixture molecules Moscow Neorg Note observed obtained Original oxidation oxygen parameters patterns phase Physics points positions prepared presented properties range ratio reaction REFERENCES refined reflections region respectively Russian salt samples Sciences shifts shown shows signals sodium solid solutions solubility space space group spectra spectrum stability structure studied synthesis Table temperature thermal tion transition Translation values vibrations X-ray diffraction