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  • Other Sources  (26)
  • ATOMIC AND MOLECULAR PHYSICS  (20)
  • Crustal deformation (cf. Earthquake precursor: deformation or strain)  (5)
  • DIP
  • 1
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    In:  J. Geophys. Res., Amsterdam, Elsevier Scientific Publishing Company, vol. 88, no. 1-4, pp. 10449-10474, pp. 1012, (ISSN: 1340-4202)
    Publication Date: 1983
    Keywords: Crustal deformation (cf. Earthquake precursor: deformation or strain) ; Gravimetry, Gravitation ; Tectonics ; JGR
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  • 2
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    In:  Geophys. Res. Lett., Luxembourg, Inst. Electrical & Electronics Engineers, vol. 25, no. 18, pp. 3413-3416, pp. B06303, (ISSN: 1340-4202)
    Publication Date: 1998
    Keywords: Crustal deformation (cf. Earthquake precursor: deformation or strain) ; Volcanology ; Geodesy ; GRL
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  • 3
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    In:  Geophys. J. Int., Taipei, AGU, vol. 142, no. 3, pp. 855-875, pp. B06304, (ISSN: 1340-4202)
    Publication Date: 2000
    Keywords: Rheology ; Inelastic ; isostasy ; Crustal deformation (cf. Earthquake precursor: deformation or strain) ; GJI
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  • 4
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    Cambridge Univ. Press
    In:  New York, Cambridge Univ. Press, vol. 10, no. 1, pp. 1-40, (ISBN 0-521-62272-7, ISBN 0-521-00600-7 paper)
    Publication Date: 2001
    Keywords: Textbook of geophysics ; Gravimetry, Gravitation ; Crustal deformation (cf. Earthquake precursor: deformation or strain) ; Tectonics ; density
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  • 5
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    Geological Society, London & Blackwell Scientific Publications
    In:  Geological Applications of Wireline Logs II, London, Geological Society, London & Blackwell Scientific Publications, vol. 65, pp. 247-264
    Publication Date: 1992
    Keywords: Borehole geophys. ; DIP ; Geol. aspects ; 16 ; (Structural ; Geology) ; 20 ; (Geophysics, ; Applied) ; Africa ; Akaso ; Field ; borehole ; breakouts ; caliper ; logging ; Cawthorne ; Channel ; Field ; dipmeter ; logging ; extension ; tectonics ; faults ; gamma-ray ; methods ; interpretation ; Niger ; Delta ; Nigeria ; oil ; and ; gas ; fields ; stress ; structural ; geology ; tectonics ; three-dimensional ; models ; well ; logs ; well-logging ; West ; Africa
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  • 6
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    Am. Geophys. Union & Geol. Soc. Am.
    In:  Bull., Open-File Rept., Dynamics of Passive Margins, Washington, D.C., Am. Geophys. Union & Geol. Soc. Am., vol. 24, no. 16, pp. 184-196, (ISBN 1-86239-165-3, vi + 330 pp.)
    Publication Date: 1982
    Keywords: Plate tectonics ; passive ; margins ; Crustal deformation (cf. Earthquake precursor: deformation or strain) ; Geol. aspects
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  • 7
    Publication Date: 2013-08-31
    Description: The Long Duration Exposure Facility (LDEF) spacecraft flew in a 28.5 deg inclination circular orbit with an altitude in the range from 319.4 to 478.7 km. For this orbital altitude and inclination, two components contribute most of the penetrating charge particle radiation encountered - the galactic cosmic rays and the geomagnetically trapped Van Allen protons. Where shielding is less than 1.0 g/sq cm geomagnetically trapped electrons make a significant contribution. The 'Vette' models together with the associated magnetic field models and the solar conditions were used to obtain the trapped electron and proton omnidirectional fluences reported previously. Results for directional proton spectra using the MSFC anisotropy model for solar minimum and 463 km altitude (representative for the LDEF mission) were also reported. The directional trapped proton flux as a function of mission time is presented considering altitude and solar activity variation during the mission. These additional results represent an extension of previous calculations to provide a more definitive description of the LDEF trapped proton exposure.
    Keywords: ATOMIC AND MOLECULAR PHYSICS
    Type: NASA. Langley Research Center, LDEF: 69 Months in Space. Part 1: Second Post-Retrieval Symposium; p 137-145
    Format: application/pdf
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  • 8
    Publication Date: 2013-08-31
    Description: The Long Duration Exposure Facility (LDEF) spacecraft flew in a 28.5 deg inclination circular orbit with an altitude in the range from 172 to 258.5 nautical miles. For this orbital altitude and inclination two components contribute most of the penetrating charge particle radiation encountered - the galactic cosmic rays and the geomagnetically trapped Van Allen protons. Where shielding is less than 1.0 g/sq cm geomagnetically trapped electrons make a significant contribution. The 'Vette' models together with the associated magnetic filed models were used to obtain the trapped electron and proton fluences. The mission proton doses were obtained from the fluence using the Burrell proton dose program. For the electron and bremsstrahlung dose we used the Marshall Space Flight Center (MSFC) electron dose program. The predicted doses were in general agreement with those measured with on-board thermoluminescent detector (TLD) dosimeters. The NRL package of programs, Cosmic Ray Effects on MicroElectronics (CREME), was used to calculate the linear energy transfer (LET) spectrum due to galactic cosmic rays (GCR) and trapped protons for comparison with LDEF measurements.
    Keywords: ATOMIC AND MOLECULAR PHYSICS
    Type: NASA. Langley Research Center, LDEF: 69 Months in Space. First Post-Retrieval Symposium, Part 1; p 213-224
    Format: application/pdf
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  • 9
    Publication Date: 2013-08-31
    Description: The current status of model prediction and comparison with LDEF radiation dosimetry measurements is summarized with emphasis on major results obtained in evaluating the uncertainties of present radiation environment model. The consistency of results and conclusions obtained from model comparison with different sets of LDEF radiation data (dose, activation, fluence, LET spectra) is discussed. Examples where LDEF radiation data and modeling results can be utilized to provide improved radiation assessments for planned LEO missions (e.g., Space Station) are given.
    Keywords: ATOMIC AND MOLECULAR PHYSICS
    Type: NASA. Langley Research Center, LDEF: 69 Months in Space. Third Post-Retrieval Symposium, Part 1; p 217-226
    Format: application/pdf
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  • 10
    Publication Date: 2019-01-25
    Description: The Long Duration Exposure Facility (LDEF) was exposed to several sources of ionizing radiation while in orbit. The principal ones were trapped belt protons and electrons, galactic cosmic rays, and albedo particles (protons and neutrons) from the atmosphere. Large solar flares in 1989 may have caused a small contribution. Prior to the recovery of the spacecraft, a number of calculations and estimates were made to predict the radiation exposure of the spacecraft and experiments. These were made to assess whether measurable radiation effects might exist, and to plan the analysis of the large number of radiation measurements available on the LDEF. Calculations and estimates of total dose, particle fluences, linear energy transfer spectra, and induced radioactivity were made. The principal sources of radiation is described, and the preflight predictions are summarized.
    Keywords: ATOMIC AND MOLECULAR PHYSICS
    Type: NASA, Langley Research Center, First LDEF Post-Retrieval Symposium Abstracts; p 11
    Format: text
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