The (p, ρ, T, x) properties for {xNH3 + (1 − x)H2O} at T = (450 and 500) K over the pressure range from (10 to 200) MPa
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[1] H. Miyamoto,et al. The (p, ρ, T, x) properties for (propane + n-butane + isobutane) ternary mixtures over the temperature range from (280 to 440) K at pressures from (1 to 200) MPa , 2008 .
[2] M. Uematsu,et al. Isobaric specific heat capacity of {xH2O + (1 − x)NH3} with x = (0.0000, 0.1566, 0.1597, 0.3030, 0.3048, 0.4956, 0.7061, and 0.8489) at T = (280, 300, 320, and 360) K over the pressure range from (0.1 to 15) MPa , 2008 .
[3] M. Uematsu,et al. Critical parameters for ammonia , 2005 .
[4] Roland Span,et al. Equations of State for Technical Applications. II. Results for Nonpolar Fluids , 2003 .
[5] W. Wagner,et al. The IAPWS Formulation 1995 for the Thermodynamic Properties of Ordinary Water Substance for General and Scientific Use , 2002 .
[6] M. Uematsu,et al. (p, ρ, T) measurements of liquid ammonia in the temperature range fromT = 310 K toT = 400 K at pressures up top = 17 MPa , 1999 .
[7] J. Magee,et al. Specific Heat Capacity at Constant Volume for {xNH3 + (1 − x)H2O} at Temperatures from 300 to 520 K and Pressures to 20 MPa , 1998 .
[8] Daniel G. Friend,et al. A Helmholtz Free Energy Formulation of the Thermodynamic Properties of the Mixture {Water + Ammonia} , 1998 .
[9] M. Uematsu,et al. DENSITIES OF 2,2,2,-TRIFLUOROETHANOL IN THE TEMPERATURE RANGE FROM 310 K TO 420 K. II: COMPRESSED-LIQUID DENSITIES AT PRESSURES UP TO 200 MPA , 1992 .
[10] O. Redlich,et al. Algebraic Representation of Thermodynamic Properties and the Classification of Solutions , 1948 .