Ionization of helium, neon, and nitrogen by helium atoms.
Ionization cross sections for helium and neon atoms and nitrogen molecules due to impact of helium atomic beam
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Ionization cross sections for helium and neon atoms and nitrogen molecules due to impact of helium atomic beam
Heat transfer characteristics of boiling neon and nitrogen in narrow annuli
Heat flux vs temperature and Nusselt number vs Reynolds number relations for nitrogen and neon boiling in narrow annuli
Thermodynamic properties and P-V-T data for neon extended to include liquid region
Nitrogen and neon pool boiling on short vertical pipe investigated for cryomagnets
Heat flux vs temperature and Nusselt number vs Reynolds number relations for nitrogen and neon boiling in narrow annuli
Accelerator technique for studying atomic spectra from multiply ionized neon beam in extreme UV
Induced IR absorption of solutions of hydrogen and deuteron in liquid neon for studying molecular rotational energy levels and translational energy
High field liquid neon cooled electromagnet design, operating characteristics and tests
Collision induced transitions within excited levels of neon
K-shell photon absorption spectrum of neon gas
Oscillator strengths for extreme ultraviolet resonance lines of ions in neon isoelectronic sequence
Viscosity and thermoconductivity coefficients of dilute neon, krypton, and xenon
Excitation cross sections for proton upper laser states of neon and proton states of krypton
WKB approximation of quantum radial distribution function for neon intermolecular pair potential taking into account particle exchange effect
Oscillator strengths for extreme UV resonance lines of ions in neon isoelectronic sequence calculated, based on single configurations in intermediate coupling
Excited levels mean life in multiply ionized oxygen and neon measured by beam-foil technique
Proton-proton small angle correlations have been measured in neon-nucleus collisions, using the 4 pi detector Diogene, at 400 and 800 MeV per nucleon incident energies. Values of the size of the emitting region are obtained by comparison with the Koonin formula, taking into account the biases of the apparatus. The dependence of the density on target mass and incident energy is also analysed.