Experimental measurements of thermal radiation properties by cyclic incident radiation
Cyclic incident radiation method for measuring thermal emittance and absorption properties of metals at cryogenic temperatures
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Cyclic incident radiation method for measuring thermal emittance and absorption properties of metals at cryogenic temperatures
Thermal radiation exchange between surfaces and enclosures
Biological effectiveness data for ionizing radiation induced sickness in mice and yeast cells
Solar absorptance, total hemispherical emittance and absorptance/emittance ratio for metals at cryogenic temperatures measured simultaneously with sinusoidally perturbed incident radiation
Excitation and radiative transport of 1304 A triplet of atomic oxygen for dayglow and aurora
Radiative transfer among surfaces forming long cavity exposed to collimated incident energy
Nonflaring solar X-ray and microwave radiation flux correlation from satellite data
Horizon sensor design with digital sampling of spaced radiation-compensated thermopile infrared detectors
Specific heat, absorptance, and emittance of thermal control coatings determined simultaneously by cyclic radiation technique
Trapped particle radiation study of selected trajectories for low altitude Skylab missions
Thermal radiative heat transfer in absorbing, emitting, and scattering media
Atmospheric models of radiative processes, sources, and sinks in mesosphere and thermosphere
Analysis of radiations encountered in space environment and manner in which interactions with matter occur
Earth atmosphere radiation fields analysis from Nimbus 3 five-channel scanning radiometer measurements, determining mean planetary albedo and temperature
An experimental study for creating population differences in the ground states of alkali atoms (Cesium 133) is presented. Studies made on GaAs-junction lasers and the achievement of population inversions among the hyperfine levels in the ground state of Cs 133 by optically pumping it with radiation from a GaAs diode laser. Laser output was used to monitor the populations in the ground state hyperfine levels as well as to perform the hyperfine pumping. A GaAs laser operated at about 77 K was used to scan the 8521 A line of Cs 133. Experiments were performed both with neon-filled and with paraflint-coated cells containing the cesium vapor. Investigations were also made for the development of the triple resonance coherent pulse technique and for the detection of microwave induced hyperfine trasistions by destroying the phase relationships produced by a radio frequency pulse. A pulsed cesium resonance lamp developed, and the lamp showed clean and reproducible switching characteristics.
Experimental clinical studies show that early pathogenetic treatment against the effects of prolonged radiation includes amitetravit as a means of increasing natural radio resistance, ATP as protective therapeutic agent, and automyelotransplantation for early pathogenetic treatment. The high effectiveness of the combined use of ATP and amitetravit in tests on dogs indicates an ability to prevent primary damages to genetic structures and accelerated processes of reparation in the first stages of radiopathological processes.
The effect of suberythematous doses of ultraviolet and ionizing radiation on sulfhydryl groups, cholesterol and hemoglobin of the blood is studied.
A high resolution spectral radiative transfer model of the troposphere for computing downwelling radiance and flux density at the surface in the 5-200 micron region has been developed. The model is fast and accurate and takes into consideration all major and minor constituents active in this region, namely, water vapor, carbon dioxide, ozone, nitrous oxide, and methane. It uses the quasi-random band model of absorption for computing atmospheric transmittances due to various bands. Continuum absorption by water vapor in the 8-14 micron region has also been taken into account. The model has been used to examine the sensitivity of downwelling flux to variations of surface water vapor pressure (or surface relative humidity), water vapor scale-height and concentrations of other gaseous constituents of the atmosphere. In addition, sensitivity to changes in a number of cloud parameters, namely, fractional cloud cover, cloud height, and high-cloud emissivity, has also been examined. Results obtained with the present model compare well with those from the empirical and semi-empirical correlations. The present work demonstrates, for the first time, the feasibility of using a high-resolution narrow-band model for computing this flux for a meteorological application.