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Fragments of the IR spectra of synthesized compounds . The VNO ) bands of ' SN isotopopolymers ( NO - group , 50 % enrichment ) , synthesized for precise assignment of > CNO fragment frequencies , are marked by star - index . Fig . 2.
Fragments of the IR spectra of synthesized compounds . The VNO ) bands of ' SN isotopopolymers ( NO - group , 50 % enrichment ) , synthesized for precise assignment of > CNO fragment frequencies , are marked by star - index . Fig . 2.
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The assignment of frequencies involving the oxime ( nitroso ) group was based on the isotope effect ( the band splitting and a decrease of intensity ) in the IR spectra of SN isotopomers of the synthesized compounds .
The assignment of frequencies involving the oxime ( nitroso ) group was based on the isotope effect ( the band splitting and a decrease of intensity ) in the IR spectra of SN isotopomers of the synthesized compounds .
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X - ray and ultraviolet photoelectron ( Hel ) spectra of These molecules were coordinated with a metal atom ammonia : ( a , b ) electron - impact excitation in the gas phase , via the sulfur and phosphorus atoms , respectively .
X - ray and ultraviolet photoelectron ( Hel ) spectra of These molecules were coordinated with a metal atom ammonia : ( a , b ) electron - impact excitation in the gas phase , via the sulfur and phosphorus atoms , respectively .
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Vol 38 No 1 | 1 |
Synthesis and Structure of the Double Phosphate KjTiZP3020 | 7 |
The Interaction of YBa2Cu3O78 with Ba Sr and Ca Fluorides | 13 |
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absorption Abstract according acid analysis anion aqueous atoms bands bismuth bond calculated cations Chem chemical Chemistry complex components composition compounds concentration constant containing coordination Copyright corresponding crystal curves decomposition decrease dependence described determined distances effect electron energy experimental extraction fluorine formation formed fragment heating increase indicate initial Inorganic Institute intensity interaction Interperiodica ions Khim lattice leads ligand lines measured melting metal method mixture mol/l molecules Moscow Neorg noted observed obtained Original oxide oxygen parameters phase Phys position possible prepared present properties range ratio reaction REFERENCES reflections region respectively Russian salts samples shift shows similar solid solutions solubility solutions space group spectra spectrum stability structure studied synthesis Table temperature ternary thermal tion transition Translation values vibrations X-ray diffraction