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Concentrational variations at relatively low temperatures are , however , considerably smaller than in the C - H - O or C - F - O systems . When the temperature is elevated to 2000 K , the difference between minor - product ...
Concentrational variations at relatively low temperatures are , however , considerably smaller than in the C - H - O or C - F - O systems . When the temperature is elevated to 2000 K , the difference between minor - product ...
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The temperature and concentration ranges studied were 448–598 K , 0.3–4 mol / for NaNO3 - H2o and 423–623 K , 0.3–3 mol / l for KNO3 ... vapor pressure over NaNO3 and KNO3 aqueous solutions was measured at low to moderate temperatures .
The temperature and concentration ranges studied were 448–598 K , 0.3–4 mol / for NaNO3 - H2o and 423–623 K , 0.3–3 mol / l for KNO3 ... vapor pressure over NaNO3 and KNO3 aqueous solutions was measured at low to moderate temperatures .
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Burning temperatures . The temperature trend is similar to that for CS2-02 reaction ( Fig . 2 , curve a ) . The absolute value of the adiabatic burning temperature is , however , much higher in this case , exceeding 2600 K at the CS2 ...
Burning temperatures . The temperature trend is similar to that for CS2-02 reaction ( Fig . 2 , curve a ) . The absolute value of the adiabatic burning temperature is , however , much higher in this case , exceeding 2600 K at the CS2 ...
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absorption according acid added addition analysis angle anions aqueous atoms band bond bridging calculated cation changes charge Chem chemical Chemistry chloride complexes composition compounds concentration constant containing coordination Copyright corresponding crystal curves decomposition decrease derivatives described determined diagram distances effect electron energy enthalpies experimental extraction formation frequencies heating higher hydrogen increase indicates initial Inorganic intensity interaction ions Khim kJ/mol ligand measured melt metal method mixed mixtures mol/l molecules Moscow Neorg observed obtained occur oxide oxygen parameters phase phosphate positions powder prepared presented properties Publishing range ratio reaction REFERENCES region respectively Russian salts samples shift shows similar sodium solid solution space group spectra spectrum stability structure studied synthesis Table temperature thermal tion Translation unit values vibrations X-ray diffraction