Surface blistering of metals due to low energy hydrogen bombardment.
Surface blistering of metals due to low energy hydrogen ion bombardment, determining solar absorptance change in gold-plated specimens
Engineering topics
Publications and source records attributed to Anderson, D. L..
Surface blistering of metals due to low energy hydrogen ion bombardment, determining solar absorptance change in gold-plated specimens
Temperature profiles of primitive terrestrial planets, discussing gravitational energy, radioactive isotope, internal heat redistribution and radiative transfer effects
Composition of terrestrial planets determined by densities of selected minerals, rocks, and silicates
Thermal history and mean density evaluations for Moon, Mars, and Earth to account for inner planet internal structure differences
Surface blistering of metals due to low energy hydrogen ion bombardment, determining solar absorptance change in gold-plated specimens
Internal melting of moon, and lunar composition, volcanics, and seismology
Performance characteristics of 10-solar constant solar radiation simulator
An experimental program, to evaluate the change in total hemispherical emittance and solar absorptance of engineering metals used on spacecraft and in spacecraft instrumentation systems, is presented. Three materials, titanium alloy, pure aluminum, and electrolytic copper, were used in the experiment. Results show that emittance, absorptance, and alpha/epsilon ratio of the materials were changed by ion bombardment. The time before the change occurs depends upon the material used, the intensity of bombardment, and the environment assumed.
Sputtering effects of ion bombardment on optical properties of metal surfaces
Dispersion of waves in a spherical earth
Advanced static inverter utilizing digital techniques and harmonic cancellation
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