Extraterrestrial radiation -- Measurement -- Mathematical modelsSee also what's at your library, or elsewhere.
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Filed under: Extraterrestrial radiation -- Measurement -- Mathematical models
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Filed under: Extraterrestrial radiation -- Measurement
Filed under: Extraterrestrial radiation -- Measurement -- InstrumentsFiled under: Albedo -- Measurement Use of environmental satellite data for input to energy balance snowmelt models : final report (Dept. of Commerce, NOAA, 1981), by Jeff Dozier and United States. National Earth Satellite Service (page images at HathiTrust) Data reduction processes for spinning flat-plate satellite-borne radiometers (National Environmental Satellite Service, 1970), by Torrence H. MacDonald and United States. National Environmental Satellite Service (page images at HathiTrust) Spectral reflectance and albedo measurements of the Earth from high altitudes (L.G. Hanscom Field, Bedford, Massachusetts : Air Force Cambridge Research Laboratories, Office of Aerospace Research, United States Air Force, 1965., 1965), by H. E. Band, L. C. Block, and Air Force Cambridge Research Laboratories (U.S.) (page images at HathiTrust) Cloud and terrestrial albedo determinations from TIROS satellite pictures (L.G. Hanscom Field, Bedford, Massachusetts : Air Force Cambridge Research Laboratories, Office of Aerospace Research, United States Air Force, 1965., 1965), by John H. Conover and Air Force Cambridge Research Laboratories (U.S.) (page images at HathiTrust) Filed under: Cosmic rays -- Measurement Near-earth charged-particle backgrounds measured with polar orbiting satellites (Lawrence Radiation Laboratory, 1963), by F. D. Seward, H. N. Kornblum, and Lawrence Radiation Laboratory (page images at HathiTrust) Experimental evaluation of various rigidity models (L.G. Hanscom Field, Bedford, Massachusetts : Air Force Cambridge Research Laboratories, Office of Aerospace Research, United States Air Force, 1967., 1967), by J. F. Kenney, D. F. Smart, M. A. Shea, J. Gauger, and Air Force Cambridge Research Laboratories (U.S.) (page images at HathiTrust) Measurements of the intensity of cosmic radiation in three latitudes of Argentina (Technical Information Service Extension ;, 1957) (page images at HathiTrust) Satellite observations of low-energy primary cosmic ray nuclei of charges Z [greater than or equal to] 6 (L.G. Hansom Field, Bedford, Massachusetts : Air Force Cambridge Research Laboratories, Office of Aerospace Research, United States Air Force, 1965., 1965), by Y. K. Lim, Ken'ichi Fukui, and Air Force Cambridge Research Laboratories (U.S.) (page images at HathiTrust)
Filed under: Cosmic rays -- Measurement -- Equipment and supplies
Filed under: Cosmic rays -- Measurement -- Equipment and supplies -- Design and construction
Filed under: Galactic cosmic rays -- Measurement -- Computer programsFiled under: Solar cosmic rays -- MeasurementFiled under: Cosmic rays -- Argentina -- Measurement
Filed under: Cosmic rays -- Mars (Planet) -- Effect of atmosphere on -- Measurement -- Computer simulation
Filed under: Cosmic rays -- Physiological effect -- Effect of geomagnetism on -- Measurement -- Mathematical models
Filed under: Radiation -- Measurement -- Mathematical models Curie evaluation of hollow cylinder sources (Brookhaven National Laboratory, 1953), by Otto A. Kuhl, Walter Rosenzweig, Bernard Manowitz, U.S. Atomic Energy Commission, and Brookhaven National Laboratory (page images at HathiTrust) Symbols, terms, units and uncertainty analysis for radiometric sensor calibration (U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology :, 1998), by Clair L. Wyatt, B. N. Taylor, Raju Umapathi Datla, V. E. Privalʹskiĭ, and National Institute of Standards and Technology (U.S.) (page images at HathiTrust)
Filed under: Radiation dosimetry -- Mathematical models Beta ray dose calculations (U.S. Atomic Energy Commission, 1957), by W. C. Roesch, U.S. Atomic Energy Commission, United States. Energy Research and Development Administration, Hanford Works, and Hanford Atomic Products Operation. Physics and Instrument Research and Development Operation (page images at HathiTrust) Gamma-ray dose rates resulting from neutron captures in air (Oak Ridge National Laboratory, 1958), by F. L. Keller, W. W. Dunn, C. D. Zerby, U.S. Atomic Energy Commission, Union Carbide Corporation, and Oak Ridge National Laboratory. Neutron Physics Division (page images at HathiTrust) Radiation flux transformation as a function of density of an infinite medium with anisotropic point sources (Oak Ridge National Laboratory, 1956), by C. D. Zerby, U.S. Atomic Energy Commission, Union Carbide Nuclear Company, and Oak Ridge National Laboratory. Applied Nuclear Physics Division (page images at HathiTrust) Ground scattered dose rate calculations using a Monte Carlo albedo (Oak Ridge, Tennessee : U.S. Atomic Energy Commission, Technical Information Service, 1954., 1954), by R. D. Shelton, Earl Feinauer, J. F. Perkins, U.S. Atomic Energy Commission, and Consolidated Vultee Aircraft Corporation (page images at HathiTrust)
Filed under: Radiation dosimetry -- Computer simulation Effects of fragmentation parameter variations on estimates of galactic cosmic ray exposure : dose sensitivity studies for aluminum shields (National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Program, 1992), by Lawrence W. Townsend and Langley Research Center (page images at HathiTrust) MCFLARE, a Monte Carlo code to simulate solar flare events and estimate probable doses encountered on interplanetary missions (National Aeronautics and Space Administration ;, 1968), by Gerald P. Lahti, Burt M. Rosenbaum, Irving M. Karp, and Lewis Research Center (page images at HathiTrust) Transport study of neutron and photon attenuation through lithium hydride and tungsten spherical media (National Aeronautics and Space Administration ;, 1969), by John A. Peoples, Daniel Fieno, United States National Aeronautics and Space Administration, and Lewis Research Center (page images at HathiTrust) Filed under: Sound -- Measurement -- Mathematical models
Filed under: Sound -- Speed -- Measurement -- Mathematical modelsFiled under: Radiation -- Measurement -- Instruments -- Mathematical models
Filed under: Extraterrestrial radiation -- Mathematical models
Filed under: Albedo -- Mathematical modelsFiled under: Cosmic rays -- Mathematical models
Filed under: Galactic cosmic rays -- Mathematical models
Filed under: Galactic cosmic rays -- Computer simulation An efficient HZETRN : (a galactic cosmic ray transport code) (National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Program, 1992), by Judy L. Shinn, John W. Wilson, and Langley Research Center (page images at HathiTrust) Effects of fragmentation parameter variations on estimates of galactic cosmic ray exposure : dose sensitivity studies for aluminum shields (National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Program, 1992), by Lawrence W. Townsend and Langley Research Center (page images at HathiTrust) A Monte Carlo calculation of the nuclear collision density of primary galactic protons in a slab of aluminum (National Aeronautics and Space Administration :, 1964), by Millard L. Wohl and Lewis Research Center (page images at HathiTrust)
Filed under: Galactic cosmic rays -- Physiological effect -- Computer simulation HZETRN : a heavy ion/nucleon transport code for space radiations (National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Program, 1991), by John W. Wilson and Langley Research Center (page images at HathiTrust) MIRACAL : a mission radiation calculation program for analysis of lunar and interplanetary missions (National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Program, 1992), by John E. Nealy, Lisa C. Simonsen, Scott A. Striepe, and Langley Research Center (page images at HathiTrust) Filed under: Solar cosmic rays -- Mathematical models
Filed under: Solar cosmic rays -- Physiological effect -- Mathematical models |