Time-dependent Ising-model description of binary liquid mixtures.
Time dependent Ising-model description of binary liquid mixture near critical temperature
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Time dependent Ising-model description of binary liquid mixture near critical temperature
Orientation relaxation in symmetrical-top gases and binary gas mixtures, noting prediction of cross sections from kinetic theory data for molecules
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Binary diffusion of minor, light gaseous component through exponential medium with atmospheric application
Algorithm for synthesis of binary sequence detectors
Rotating emission ring in terms of stability of periodic orbits in restricted three-body problem for binary systems
Channel error effect on sample compression system employing binary sequence time encoding
Crystallization kinetics of molten binary and ternary oxide systems
Thermodynamic analysis of binary vapor liquid equilibria
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Chernoff bound and tilted distribution argument for obtaining error probability bounds for binary signaling on slowly fading Rician channel
Contact binaries origin and evolution, discussing orbital angular momentum dissipation through mass ejection along magnetic lines of force
Age and helium content correlations from recent mass determinations of two low mass binary star systems used in stellar evolution theory
Representation of rotating gaseous emission rings in eclipsing binary systems by periodic orbits around more massive component in restricted three-body problem
Mass transfer cooling of carbon dioxide-nitrogen binary system in laminar boundary layer, stressing dissociation effect
We present the discovery of two T dwarf binaries, 2MASS 1225-2739AB and 2MASS 1534-2952AB, identified in a sample of ten T dwarfs imaged with the Huble Space Telescope Wide Field Planetary Camera 2.
We present new emission line spectra and an analysis of the mass outflow for the massive binary, HD 149404.
An Investigation of the statistical description of binary mixing and/or reaction between a carrier gas and an evaporated vapor species in two-phase gas-liquid turbulent flows is perfomed through both theroetical analysis and comparisons with results from direct numerical simulations (DNS) of a two-phase mixing layer.