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Khuyagbaatar, J.*; Heberger, F. P.*; Hofmann, S.*; Ackermann, D.*; Burkhard, H. G.*; Heinz, S.*; Kindler, B.*; Kojouharov, I.*; Lommel, B.*; Mann, R.*; et al.
Physical Review C, 102(4), p.044312_1 - 044312_8, 2020/10
Times Cited Count:8 Percentile:69.78(Physics, Nuclear)Cubiss, J. G.*; Barzakh, A. E.*; Andreyev, A. N.; 57 of others*
Physics Letters B, 786, p.355 - 363, 2018/11
Times Cited Count:21 Percentile:83.68(Astronomy & Astrophysics)Hofmann, S.*; Heinz, S.*; Mann, R.*; Maurer, J.*; Mnzenberg, G.*; Antalic, S.*; Barth, W.*; Dahl, L.*; Eberhardt, K.*; Grzywacz, R.*; et al.
European Physical Journal A, 52(4), p.116_1 - 116_12, 2016/04
Times Cited Count:30 Percentile:87.24(Physics, Nuclear)Murakami, Takashi
Kobutsugaku Zasshi, 22(1), p.3 - 20, 1993/01
no abstracts in English
Murakami, Takashi; B.C.Chakoumakos*; R.C.Ewing*; G.R.Lumpkin*; W.J.Weber*
American Mineralogist, 76, p.1510 - 1532, 1991/00
no abstracts in English
Hirooka, Shun; Kato, Masato; Komeno, Akira; Sunaoshi, Takeo*
no journal, ,
MA-bearing MOX pellets with lattice defect accumulated by alpha decay were annealed. The decreased density due to the lattice defect was recovered. However, the density started to decrease again above 1300C. Ceramography of the annealed pellets showed that the density decrease was attributed by helium pores formed along grain.