3 edition of A T-matrix theory of galactic heavy-ion fragmentation found in the catalog.
A T-matrix theory of galactic heavy-ion fragmentation
John W. Norbury
1985 by National Aeronautics and Space Administration, Scientific and Technical Information Branch in [Washington, D.C.] .
Written in English
|Other titles||T matrix theory of galactic heavy ion fragmentation.|
|Statement||John W. Norbury, Lawrence W. Townsend, Philip A. Deutchman.|
|Series||NASA technical paper -- 2363.|
|Contributions||Townsend, Lawrence W., Deutchman, Philip A. 1937-, United States. National Aeronautics and Space Administration. Scientific and Technical Information Branch.|
|The Physical Object|
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T-matrix theory of galactic heavy-ion fragmentation. Washington, D.C.: National Aeronautics and A T-matrix theory of galactic heavy-ion fragmentation book Administration, Scientific and Technical Information Branch ; Springfield, Va.: For sale by the National Technical Information Service, (OCoLC) Microfiche: Norbury, John W.
T-matrix theory of galactic heavy-ion fragmentation. T-matrix theory of galactic heavy-ion fragmentation. [Washington, D.C.]: National Aeronautics and Space Administration, Scientific and Technical Information Branch, (OCoLC) Material Type: Government publication, National government publication: Document Type: Book: All Authors / Contributors.
Title(s): A T-matrix theory of galactic heavy-ion fragmentation/ John W. Norbury, Lawrence W. Townsend, and Philip A. Deutchman. Country of Publication: United States Publisher: [Washington, D.C.]: National Aeronautics and Space Administration, Scientific and Technical Information Branch, The primary cosmic rays are dispersed over a large range of linear energy transfer (LET) values and their distribution over LET is a determinant of biological response.
This LET distribution is Cited by: 9. Full text of "Calculation of two-neutron multiplicity in photonuclear reactions" See other formats ^^ January Calculation of Two-Neutron Multiplicity in Photonuclear Reactions John W.
Norbury and Lawrence W, Townsend (NA^A-TP-;^9Ad) CALCULATION o^ Ty^--^^^M y p ^^ MULTIPLICITY IN PHOTONUCL-AR REACTIONS (NASA) 11 p CSCL?0H No90 Hi. Any deviation from the phase space diagram is due to variables in the T-matrix.
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0 scattering 1 theory 2 nuclear 3 magnetic 4 energy 5 effect 6 electron 7 absorption 8 resonance 9 structure 10 spectrum 11 decay 12 electrons 13 field 14 cross 15 crystals 16 effects 17 properties 18 neutrons 19 states 20 spectra 21 model 22 neutron 23 production.
INELASTIC FRAGMENTATION IN HEAVY ION COLLISIONS AT E=10 MeV/NUCLEON In order to accurately determine the radiation risk to astronauts from Galactic Cosmic Rays (GCB) the nature of the secondary radiation field created by the fragmentation of GCR in shielding and tissue must be understood.
A combined use of the coupled-channel method and. Heavy ion fragmentation experiments at the bevatron. NASA Technical Reports Server (NTRS) Heckman, H. Collaborative research efforts to study the fragmentation processes of heavy nuclei in matter using heavy ion beams of the Bevatron/Bevalac are described.
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This book is intended to summarize some of the advances achieved by these research groups after more than ten years of studies on radiation damage in biomolecular systems. An extensive first part deals with recent experimental and theoretical findings on radiation induced damage on the molecular level.
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The properties of dark matter and dark energy in the galactic halo and the galactic center are investigated in the framework of a model based on self-gravitating fermions at finite temperature (N.
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Colwell, Frederick S. Takai, Ken TI Subseafloor Microbial Communities in Methane Hydrate-Bearing Sediment at Two Distinct Locations (ODP Leg) in the Cascadia Margin SO MICROBES AND. Explorar; Entrar; Criar uma nova conta de usuário; Publicar ×.
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%R %0 Journal Article %A Kim, Young-Jong %A Han, Jiwon %A Sano, Hikaru %A Lee, Kyung-Hwang %A Noda, Kei %A Ichii, Takashi %A Murase, Kuniaki %A Matsushige, Kazumi %A Sugimura, Hiroyuki %D %F / %I ELSEVIER SCIENCE BV %K Self-assembled monolayer (SAM) %K Multilayer %K Photochemical surface modification %K.