Thermodynamic properties of liquid metals
Technique for determining heats of fusion and heat capacities of liquid metals at high temperature
Engineering topics
Publications and source records attributed to Margrave, J. L..
Technique for determining heats of fusion and heat capacities of liquid metals at high temperature
Summary of the current state of knowledge about the thermodynamic properties of liquid metals, including heats of fusion and heat capacities. A table is presented of consistent thermodynamic data for liquid metals, including estimates for the many high-melting transition metals which have not yet been studied, based on new levitation data and on periodic table correlations.
Group 4A difluorides vaporization thermodynamics and bond dissociation energies, tabulating mass spectra, vapor composition, reaction enthalpies, heats of polymerization and thermodynamic functions
High temperature mass spectrometry showing solid aluminum oxide disassociates upon vaporization, discussing Al/g/ reactions with gaseous sulphur, selenium and tellurium
Mass spectrometric studies of high temperature equilibria involving tantalum and various manganese compounds reactions
Volatile Al, Sc, Co, Y, Zr and rare earth chelates mass spectrometry
Mass spectrometry of titanium subfluorides at high temperatures, determining sublimation pressures and heat and dissociation energy
IR spectroscopy applications to high temperature molecules
High temperature thermodynamics requiring species and phases identification, crystal structures, molecular geometries and vibrational, rotational and electronic energy levels and equilibrium constants
Sublimation and gaseous equilibria involving neodymium fluorides and barium fluorides
Sublimation pressure of copper fluoride measured via mass spectrometry, noting dissociation energy
Thermodynamic properties and appearance potentials of cubane /tricyclooctane/
Vapor species identification, absolute vapor pressures and heats of sublimation of refractory metal fluorides
Sublimation rate of iron fluoride and identification of vapor species by Knudsen technique, using mass spectrometer
Langmuir and Knudsen techniques used to determine sublimation and vaporization rates of strontium chloride