4 edition of Contribution of high charge and energy (HZE) ions during solar-particle event of September 29, 1989 found in the catalog.
Contribution of high charge and energy (HZE) ions during solar-particle event of September 29, 1989
1999 by National Aeronautics and Space Administration, Langley Research Center, National Technical Information Service, distributor in Hampton, Va, [Springfield, Va .
Written in English
|Statement||Myung-Hee Y. Kim ... [et al.].|
|Series||NASA/TP -- 1999-209320., NASA technical paper -- 209320.|
|Contributions||Kim, Myung-Hee Y., Langley Research Center.|
|The Physical Object|
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Contribution of High Charge and Energy (HZE) Ions During Solar-Particle Event of Septem Abstract. The solar-particle event (SPE) of Septemproduced an iron-rich spectrum with energies approaching 1 A GeV with an approximate spectral slope parameter of These high charge and energy (HZE) ions challenge Contribution of High Charge and Energy (HZE) Ions During Solar-Particle Event of Septem Myung-Hee Y.
Kim and John W. Wilson Langley Research Center, Hampton, Virginia Francis A. Cucinotta Johnson Space Center, Houston, Texas Lisa C.
Simonsen Langley Research Center, Hampton, Virginia William Atwell Boeing North American, Houston, Texas Contribution of high charge and energy (HZE) ions during solar-particle event of Septem The solar-particle event (SPE) of Septemproduced an iron-rich spectrum with energies approaching 1 A GeV with an approximate spectral slope parameter of These high charge and energy (HZE) ions challenge conventional methods of shield design and assessment of astronaut risks.
In the past, shield design and risk assessment have relied on proton shielding codes and K/abstract. Get this from a library. Contribution of high charge and energy (HZE) ions during solar-particle event of Septem [Myung-Hee Y Kim; Langley Research Center.;] Contribution of High Charge and Energy (HZE) Ions During Solar-Particle Event of Septem By Myung-Hee Kim And, Myung-hee Y.
Kim, John W. Wilson, Francis A. Cucinotta, Lisa C. Simonsen, William Atwell, Francis F. Badavi and Jack Miller However, the sluggish charge transfer and poor interfacial compatibility between solid electrodes and solid electrolyte severely hinder the performance of high-energy-density solid-state lithium batteries.
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