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  • Other Sources  (7)
  • 1980-1984  (3)
  • 1965-1969  (4)
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  • 1
    Publication Date: 2016-06-07
    Description: The precipitation of high energetic electrons during and after strong geomagnetic storms into heights below 100 km in middle and subauroral latitudes is markedly modulated by the structure of the interplanetary magnetic field (IMF). Under relative quiet conditions the D-region ionization caused by high energetic particle precipitation (energies greater than 20 to 50 keV) depends on changes of the interplanetary magnetic field and also on the velocity of the solar wind. To test this assumption, the influence of the IMF-sector boundary crossings on ionospheric absorption data of high and middle latitudes by the superposed-epoch method was investigated.
    Keywords: GEOPHYSICS
    Type: International Council of Scientific Unions Middle Atmosphere Program. Handbook for MAP, Vol. 10; p 200-204
    Format: application/pdf
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  • 2
    Publication Date: 2019-06-27
    Description: Sterilizable wide angle gas bearing gyro FGG334S
    Keywords: INSTRUMENTATION AND PHOTOGRAPHY
    Type: NASA-CR-100213 , JPL-20584-PR8
    Format: application/pdf
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  • 3
    Publication Date: 2019-06-27
    Description: Development of sterilizable wide angle gas bearing gyroscope
    Keywords: INSTRUMENTATION AND PHOTOGRAPHY
    Type: NASA-CR-96134 , REPT.-20584-QR7 , QPR-7
    Format: application/pdf
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  • 4
    Publication Date: 2019-06-27
    Description: Preliminary assembly and initial test results of gas bearing gyroscope with high-g and sterilization capabilities
    Keywords: INSTRUMENTATION AND PHOTOGRAPHY
    Type: NASA-CR-95978 , REPT.-20660-QR6
    Format: application/pdf
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  • 5
    Publication Date: 2019-06-27
    Description: Gas bearing gyroscope possessing high G and sterilization capability, utilizing low power spinmotor and high frequency pump
    Keywords: INSTRUMENTATION AND PHOTOGRAPHY
    Type: NASA-CR-73647 , FR-20660-FR-1
    Format: application/pdf
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  • 6
    Publication Date: 2019-07-13
    Description: The Cryogenic Limb-Scanning Interferometer/Radiometer (CLIR) is being developed to observe infrared emissions of the earth's upper atmosphere from space. The earth's surface is an extended source of intense background radiation with a small angular separation from the desired scene. The CLIR employs an off-axis Gregorian Telescope whose primary mirror and baffles are cooled by an open-cycle cryogen system. A system of specular annular baffles has been developed to minimize both stray light problems and cryogen consumption by retro-mapping the aperture into itself. Each off-axis ray which enters the aperture and strikes the specular baffle surface is reflected so that it passes out of the aperture and is not absorbed on a cryogenic surface. The specular baffle which lies closest to the aperture is an ellipsoid whose foci trace out the circular aperture on revolution about the axis. Its theoretical 'ray trace' efficiency is 100 percent. A subsequent baffle has an elliptical cross section whose near focus traces out the central hole in the ellipsoidal baffle and whose far focus traces out the aperture. Its theoretical efficiency is about 90 percent. These baffles reduce the earth radiation heat load on the cryogenic cooler by an order of magnitude, changing it from the dominant cause of cryogen consumption to a relatively small effect. An aperture shield is also desirable to reduce cryogen consumption, stray light, and contamination.
    Keywords: SPACECRAFT INSTRUMENTATION
    Type: Seminar on Cryogenically cooled sensor technology; Jul 29, 1980 - Jul 30, 1980; San Diego, CA
    Format: text
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  • 7
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    In:  Other Sources
    Publication Date: 2019-07-13
    Description: Physical models are developed for establishing criteria to decide on the acceptable contamination level of optical devices in space-borne conditions. Optical systems can be degraded in terms of decreased throughput, i.e., transmissivity or reflectivity, or increases in the total integrated scatter (TIS). Performance losses can be caused by particulate accretion, molecular film accretion, and impact cratering. A quantitative relationship is defined for film thickness and loss of throughput. Formulas are also developed for cases where induced surface defects are larger than the desired viewing wavelengths, or smaller or of the same order of the observed wavelengths. The techniques are used to quantify the degradation of a VUV solar coronagraph, a VUV stellar telescope, and a solar cell due to TIS. Applications are projected for estimating the contamination sensitivity of specific instruments, assessing the contamination hazard from known particulates, or to define clean room standards.
    Keywords: SPACECRAFT DESIGN, TESTING AND PERFORMANCE
    Type: Shuttle optical environment; Apr 23, 1981 - Apr 24, 1981; Washington, DC
    Format: text
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