Electron-beam studies of viscous flow in supersonic nozzles
Viscous flow in supersonic de Laval nozzle, measuring gas density and rotational temperatures by electron beam techniques
Engineering topics
Publications and source records attributed to Rothe, D. E..
Viscous flow in supersonic de Laval nozzle, measuring gas density and rotational temperatures by electron beam techniques
Li photoionization cross sections determined from spectral intensity measurements as function of threshold wavelength, discussing radiative electron-ion recombination into first excited state
Low Reynolds number flow inside Delaval nozzle, examining gas density and rotational temperatures by electron beam techniques
Electron beam measurements of gas densities and rotational temperatures in viscous nozzle flow
System makes use of diverging duct walls for conducting the light from entrance slips to the conductors by means of multiple reflectors. This system simultaneously records, photoelectrically, the intensities of several closely spaceed narrow wavelengths in the ultraviolet and infrared areas of the spectrum.
Radiative capture of electrons by chlorine, bromine and iodine atoms in shock heated plasma seeded with sodium halides from absolute intensities in continuous emission
Photoionization cross section measurements for sodium line by analyzing electron-ion recombination radiation from sodium seeded plasma, determining electron temperatures and concentrations