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Shielding against space debris. A comparison between different shields : the effect of materials on their performanceLAMBERT, M; SCHNEIDER, E.International journal of impact engineering. 1995, Vol 17, Num 4-6, pp 477-485, issn 0734-743XConference Paper

An investigation of metal matrix composites as shields for hypervelocity orbital debris impactsROBINSON, J. H; NOLEN, A. M.International journal of impact engineering. 1995, Vol 17, Num 4-6, pp 685-696, issn 0734-743XConference Paper

Development of a unique curve for thermal neutron self-shielding factor in spherical scattering materialsSALGADO, J; I; GONCALVES, F et al.Nuclear science and engineering. 2004, Vol 148, Num 3, pp 426-428, issn 0029-5639, 3 p.Article

Development of 300 °C heat resistant boron-loaded resin for neutron shieldingMORIOKA, Atsuhiko; SAKURAI, Shinji; MATSUKAWA, Makoto et al.Journal of nuclear materials. 2007, Vol 367-370, pp 1085-1089, issn 0022-3115, 5 p., bConference Paper

Enhancement of permeability of Co-based amorphous alloy by two-step cooling methodYANG, J. H; KIM, Y. B; RYU, K. S et al.Journal of magnetism and magnetic materials. 2000, Vol 222, Num 1-2, pp 65-69, issn 0304-8853Article

Cosmic rays and their interactions with the geomagnetic field and shielding materialHEINRICH, W.International journal of radiation applications and instrumentation. Part C, Radiation physics and chemistry. 1994, Vol 43, Num 1-2, pp 19-34, issn 1359-0197Article

The shielding of γ-rays by concretes produced with bariteAKKURT, I; BASYIGIT, C; KILINCARSLAN, S et al.Progress in nuclear energy (New series). 2005, Vol 46, Num 1, pp 1-11, issn 0149-1970, 11 p.Article

Dispersion of single-walled carbon nanotubes in a non-polar polymer, poly(4-methyl-1-pentene)CLAYTON, Lanetra M; GERASIMOV, Timofey G; CINKE, Martin et al.Journal of nanoscience and nanotechnology (Print). 2006, Vol 6, Num 8, pp 2520-2524, issn 1533-4880, 5 p.Article

TRANSMISSION OF SHIELDING MATERIALS FOR PARTICLE THERAPY FACILITIESIPE, Nisy E.Nuclear technology. 2009, Vol 168, Num 2, pp 559-563, issn 0029-5450, 5 p.Conference Paper

USE OF MULTIPLE LAYERS OF REPEATING MATERIAL TO EFFECTIVELY COLLIMATE AN ISOTROPIC NEUTRON SOURCEWHETSTONE, Z. D; KEARFOTT, K. J.Nuclear technology. 2011, Vol 176, Num 3, pp 395-413, issn 0029-5450, 19 p.Article

Development of Flexible Neutron-Shielding Resin as an Additional Shielding MaterialSUKEGAWA, Atsuhiko M; ANAYAMA, Yoshimasa; OHNISHI, Seiki et al.Journal of nuclear science and technology. 2011, Vol 48, Num 4, pp 585-590, issn 0022-3131, 6 p.Conference Paper

FRAGMENTATION CALCULATIONS FOR ENERGETIC IONS IN CANDIDATE SPACE RADIATION SHIELDING MATERIALSMANSUR, L. K; CHARARA, Y. M; GUETERSLOH, S. B et al.Nuclear technology. 2009, Vol 166, Num 3, pp 263-272, issn 0029-5450, 10 p.Conference Paper

Natural radioactivity in common building construction and radiation shielding materialsSONKAWADE, R. G; KANT, K; MURALITHAR, S et al.Atmospheric environment (1994). 2008, Vol 42, Num 9, pp 2254-2259, issn 1352-2310, 6 p.Article

Design of the fusion ignition research experiment (FIRE) plasma facing componentsULRICKSON, M. A; BAXI, C; BROOKS, J et al.Fusion technology. 2001, Vol 39, Num 2, pp 378-382, issn 0748-1896, 2Conference Paper

SPECIAL ISSUE ON THE 11TH INTERNATIONAL CONFERENCE ON RADIATION SHIELDING AND THE 15TH TOPICAL MEETING OF THE RADIATION PROTECTION AND SHIELDING DIVISION (PART 1)HOWELL, Rebecca M; HERTEL, Nolan E.Nuclear technology. 2009, Vol 168, Num 1, issn 0029-5450, 256 p.Conference Proceedings

Diagnostics of ballistic resistance of constructional shields and experimental verificationZATORSKI, Z.Journal de physique. IV. 2006, Vol 134, pp 1131-1135, issn 1155-4339, 5 p.Conference Paper

The use of an expanded polynomial orthogonal set in approximations to gamma-ray buildup factor dataMICHIELI, I.Nuclear science and engineering. 1994, Vol 117, Num 2, pp 110-120, issn 0029-5639Article

Gamma-ray shielding properties of concrete including barite at different energiesAKKURT, I; AKYILDIRIM, H; MAVI, B et al.Progress in nuclear energy (New series). 2010, Vol 52, Num 7, pp 620-623, issn 0149-1970, 4 p.Article

Approximating model for multilayer gamma-ray buidup factors by transmission matrix method: application to point isotropic source geometrySHIN, K; HIRAYAMA, H.Nuclear science and engineering. 1995, Vol 120, Num 3, pp 211-222, issn 0029-5639Article

COMPONENTS OF THE BACKGROUND OF Ge(Li) AND Ge DETECTORS IN PASSIVE SHIELDINGBURAEVA, E. A; DAVYDOV, M. G; ZORINA, L. V et al.Atomic energy (New York, N.Y.). 2007, Vol 103, Num 5, pp 895-900, issn 1063-4258, 6 p.Article

Effects of linear polarization and doppler broadening on the exposure buildup factors of low-energy gamma raysNAMITO, Y; NAMITO, Y; NAMITO, Y; NAMITO, Y; BAN, S et al.Nuclear science and engineering. 1995, Vol 120, Num 3, pp 199-210, issn 0029-5639Article

Development of fitting methods using geometric progression formulae of gamma-ray buildup factorsYOSHIDA, Yoshitaka.Journal of Nuclear Science and Technology. 2006, Vol 43, Num 12, pp 1446-1457, issn 0022-3131, 12 p.Article

Application of the EGS4 Monte Carlo code to a study of multilayer gamma-ray exposure buildup factors of up to 40 mfpHIRAYAMA, H; SHIN, K.Journal of Nuclear Science and Technology. 1998, Vol 35, Num 11, pp 816-829, issn 0022-3131Article

Electrostatic shielding of vaporizing surfaces exposed to hot plasmasLENGYEL, L. L; ROZHANSKIJ, V. A; VESELOVA, I. Yu et al.Nuclear fusion. 1996, Vol 36, Num 12, pp 1679-1690, issn 0029-5515Article

Improving colloidal graphite for electromagnetic interference shielding using 0.1 μm diameter carbon filamentsJUNHUA WU; CHUNG, D. D. L.Carbon (New York, NY). 2003, Vol 41, Num 6, pp 1313-1315, issn 0008-6223, 3 p.Article

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