Zobrazeno 1 - 10
of 10
pro vyhledávání: '"V. I. Glazov"'
Publikováno v:
Russian Journal of Applied Chemistry. 77:1733-1735
The activities and activity coefficients of the components of the system NaNO2-NaNO3, obtained from experimental saturated vapor pressures measured at 798, 823, and 848 K, were used to calculate the total and excess partial molar Gibbs energies $$\De
Publikováno v:
Russian Journal of Applied Chemistry. 77:333-335
The partial pressure of sodium nitrite was measured in the system NaNO2-NaNO3 at temperatures of 798, 823, and 848 K and the logarithm of the NaNO2 pressure was obtained as a function of inverse temperature. The coefficients A and B of the Clausius-C
Publikováno v:
Russian Journal of Applied Chemistry. 76:1405-1407
The partial pressures of sodium nitrite and sodium nitrate over the system NaNO2-NaNO3 were determined at 798, 823, and 848°C. For sodium nitrate, A and B coefficients of the Clausius-Clapeyron equation, partial molar heats of vaporization, activiti
Publikováno v:
Russian Journal of Applied Chemistry. 76:358-360
The activity and activity coefficients of the components of the NaNO2-KNO3 system, determined from the experimental data on the saturated vapor pressure at 798, 823, and 848 K, are used to calculate the relative and excess partial molar Gibbs energie
Publikováno v:
Russian Journal of Applied Chemistry. 75:891-893
The partial pressure of sodium nitrite in the system NaNO2-KNO3 was measured at 798, 823, and 848 K. The dependence of the logarithm of the NaNO2 pressure on inverse temperature is presented. Coefficients A and B of the Clausius-Clapeyron equation an
Publikováno v:
Russian Journal of Applied Chemistry. 75:888-890
The partial pressures of sodium nitrite and potassium nitrate over melts of the binary system NaNO2-KNO3 were measured at 798, 823, and 848 K. Negative deviations of the vapor pressure from Raoult's law, which decrease with increasing temperature, ar
Publikováno v:
AIP Conference Proceedings.
Based on the latest thermodynamic data on boron and 18 boron‐containing compounds computer‐based simulation of boron trichloride‐hydrogen system equilibration was made in 1000–6000 K temperature range, NH2/NBCl2=2−50 and 101Pa–1.01 MPa pr
Autor:
G. A. Klemeshov, V. G. Panasenko, V. D. Roztorguev, B. G. Ryabinin, V. P. Evtyutov, V. I. Dorokhov, V. I. Glazov, V. A. Palyanichka
Publikováno v:
Metallurgist. 16:178-181
Publikováno v:
Russian Journal of Applied Chemistry; Oct2004, Vol. 77 Issue 10, p1733-1735, 3p
Publikováno v:
Russian Journal of Applied Chemistry; Feb2004, Vol. 77 Issue 2, p333-335, 3p