
doi: 10.2172/4511962
Assessment is given of physical and thermodynamic properties of sodium. FORTRAN subroutine computes enthalphy and entropy of sodium in given state, and composition, molecular weight, volume, and compressibility factor of corresponding vapor. Tabular results for saturated liquid and vapor are presented for a 500-2500 degree F range.
Expansion, Ceramics, Weight Nesdps Office Of Nuclear Energy Space And Defense Power Systems, Bibliography, Entropy, Transport, Density, & Other Materials--Metals & Alloys--Properties Evaluations, Nesdps Office Of Nuclear Energy Space And Defense Power Systems, Enthalpy, Pressure, Surface Tension, Sodium/Physical Properties At 210 To 2500$Sup 0$F, Sodium/Thermodynamic Properties At 210 To 2500$Sup 0$F, Viscosity, Volume, Sodium, Electric Conductivity, Temperature, Thermal Conductivity, Molecules, Review Of, N30130* --Metals, Vapors, Thermodynamics, Liquid Metals
Expansion, Ceramics, Weight Nesdps Office Of Nuclear Energy Space And Defense Power Systems, Bibliography, Entropy, Transport, Density, & Other Materials--Metals & Alloys--Properties Evaluations, Nesdps Office Of Nuclear Energy Space And Defense Power Systems, Enthalpy, Pressure, Surface Tension, Sodium/Physical Properties At 210 To 2500$Sup 0$F, Sodium/Thermodynamic Properties At 210 To 2500$Sup 0$F, Viscosity, Volume, Sodium, Electric Conductivity, Temperature, Thermal Conductivity, Molecules, Review Of, N30130* --Metals, Vapors, Thermodynamics, Liquid Metals
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