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Tamii, Atsushi*; Pellegri, L.*; Sderstrm, P.-A.*; Allard, D.*; Goriely, S.*; Inakura, Tsunenori*; Khan, E.*; Kido, Eiji*; Kimura, Masaaki*; Litvinova, E.*; et al.
European Physical Journal A, 59(9), p.208_1 - 208_21, 2023/09
Times Cited Count:2 Percentile:64.66(Physics, Nuclear)no abstracts in English
Terunuma, Akihiro; Mimura, Ryuji; Nagashima, Hisao; Aoyagi, Yoshitaka; Hirokawa, Katsunori*; Uta, Masato; Ishimori, Yuu; Kuwabara, Jun; Okamoto, Hisato; Kimura, Yasuhisa; et al.
JAEA-Review 2016-008, 98 Pages, 2016/07
Japan Atomic Energy Agency formulated the plan to achieve the medium-term target in the period of April 2010 to March 2015(hereinafter referred to as "the second medium-term plan"). JAEA determined the plan for the business operations of each year (hereinafter referred to as "the year plan"). This report is that the Sector of Decommissioning and Radioactive Waste Management has summarized the results of the decommissioning technology development and decommissioning of nuclear facilities which were carried out in the second medium-term plan.
Okamoto, Jun*; Mamiya, Kazutoshi*; Fujimori, Shinichi; Okane, Tetsuo; Saito, Yuji; Muramatsu, Yasuji*; Yoshii, Kenji; Fujimori, Atsushi*; Tanaka, Arata*; Abbate, M.*; et al.
Physical Review B, 71(10), p.104401_1 - 104401_5, 2005/03
Times Cited Count:20 Percentile:61.84(Materials Science, Multidisciplinary)The antiferromagnetic-to-ferromagnetic transition in SrFeCoO (0.15) induced by Co doping has been studied by magnetic circular X-ray dichroism. The orbital and spin magnetic moments of the Fe and Co 3 states under the magenetic field of 2 T are found to show different dependences: The spin polarization of Fe 3 gradually increases with Co concentration; On the other hand, a large spin polarization of Co 3 is induced already in the antiferromagnetic phase, indicating that the Co moment is nearly fully alligned already in the antiferromagnetic phase. This suggests that the alignment of the Fe magnetic moment in SrFeCoO is induced by interaction with doped Co magnetic moment. Possible formation of ferromagnetic Co rich region is discussed.
Uezu, Kazuya*; Saito, Kyoichi*; Hori, Takahiro*; Furusaki, Shintaro*; Sugo, Takanobu; Okamoto, Joro
Nihon Genshiryoku Gakkai-Shi, 30(4), p.359 - 364, 1988/04
Times Cited Count:7 Percentile:61.31(Nuclear Science & Technology)no abstracts in English
*; Saito, Kyoichi*; Furusaki, Shintaro*; Sugo, Takanobu; Okamoto, Jiro
Nihon Kagakkai-Shi, 1988(2), p.212 - 216, 1988/00
no abstracts in English
Hori, Takahiro*; Saito, Kyoichi*; Furusaki, Shintaro*; Sugo, Takanobu; Okamoto, Jiro
Kagaku Kogaku Rombunshu, 13(6), p.795 - 800, 1987/12
Times Cited Count:7 Percentile:57.8(Engineering, Chemical)Chelating resins containing amide
Saito, Kyoichi*; Hori, Takahiro*; Furusaki, Shintaro*; Sugo, Takanobu; Okamoto, Jiro
Industrial & Engineering Chemistry Research, 26(10), p.1977 - 1981, 1987/10
Times Cited Count:63 Percentile:93.76(Engineering, Chemical)A porous, amidoxime-group-containing membrane was prepared by radiation-induced grafit polymerization of acrylonitrile onto porous polyethylene film followed by chemical conversion of the produced cyano group to an amidoxime group.
Saito, Kyoichi*; Yamada, Shinji*; Furusaki, Shintaro*; Sugo, Takanobu; Okamoto, Jiro
J. Membr. Sci., 34(2), p.307 - 315, 1987/00
Times Cited Count:36 Percentile:87.47(Engineering, Chemical)Chelating membranes containing amidoxime groups for the recovery of uranium were synthesized by teh radiation-induced graft polymerization of acrylonitrile onto high- and low-density polyethylene films, followed by amidoximation of the cyano groups.
Furusaki, Shintaro*; Okamoto, Jiro; Sugo, Takanobu; Saito, Kyoichi*
Kemikaru Enjiniyaringu, 32(7), p.521 - 524, 1987/00
no abstracts in English