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Equations describing the dependence Cp -f ( T ) were derived , and the chromite functions C. ( 1 ) ... and Q ( T ) were calculated for the temperature range 298.15-673 K. The temperature dependence of the chromite dielectric constant ...
Equations describing the dependence Cp -f ( T ) were derived , and the chromite functions C. ( 1 ) ... and Q ( T ) were calculated for the temperature range 298.15-673 K. The temperature dependence of the chromite dielectric constant ...
Trang S-9
The Raman line width versus Li2O concentration dependence for ceramic LN samples found in ( 18 , 30 , 38 ] , which is fully consistent with data in ( 19 , 25 ) ( Fig . 5 ) , proves that the state of the system corresponds to the ...
The Raman line width versus Li2O concentration dependence for ceramic LN samples found in ( 18 , 30 , 38 ] , which is fully consistent with data in ( 19 , 25 ) ( Fig . 5 ) , proves that the state of the system corresponds to the ...
Trang S-20
Neither the dispersion depth nor the dielectric constant changes until samples are heated to temperatures above ~ 340 K , but the dielectric relaxation time shows a temperature dependence satisfying the Arrhenius law : 680 640 T ( T ) ...
Neither the dispersion depth nor the dielectric constant changes until samples are heated to temperatures above ~ 340 K , but the dielectric relaxation time shows a temperature dependence satisfying the Arrhenius law : 680 640 T ( T ) ...
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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 materials 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