- Page 3: JAEA-Conf 2011-002 Proceedings of t
- Page 7: JAEA-Conf 2011-002 31. Preliminary
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- Page 15 and 16: JAEA-Conf 2011-002 2. Personal Pers
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- Page 27 and 28: JAEA-Conf 2011-002 Takuya Ito, Sh
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- Page 41 and 42: JAEA-Conf 2011-002 Table 1. Charact
- Page 43 and 44: JAEA-Conf 2011-002 Fig. 2 Prelimina
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- Page 47 and 48: shown schematically in Fig. 2. The
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In the case of most compact cascade
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High energy particle Vacancy JAEA-C
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JAEA-Conf 2011-002 10. Exciton mode
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JAEA-Conf 2011-002 175 MeV QMN is c
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JAEA-Conf 2011-002 Figure 4. Produc
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JAEA-Conf 2011-002 11. Experimental
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JAEA-Conf 2011-002 changer. The tar
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DDX [mb/MeV/sr] 10 -9 10 -8 10 -7 1
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JAEA-Conf 2011-002
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, Tform of . Hence ,
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20deg. JAEA-Conf 2011-002 20deg. 45
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JAEA-Conf 2011-002 13. Nuclear Data
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JAEA-Conf 2011-002 3. Operation of
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5. Nuclear Data vs. KoRIA JAEA-Conf
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INRNE-BAS: Recent State and Future
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JAEA-Conf 2011-002 The main conclus
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In Fig. 2 the quasielastic (QE) coh
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1 , 2 , 3 1 Department of Applied
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fslp at Teff = 593 keV and neff = 2
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JAEA-Conf 2011-002 and confinement
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16. Theoretical Studies on Reaction
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dB(E1)/dε [e 2 fm 2 /MeV] 0.2 0.1
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are absorbed. The second (third) te
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JAEA-Conf 2011-002 17. Thermal / ep
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JAEA-Conf 2011-002 in the counter i
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JAEA-Conf 2011-002 39cm and 49cm fr
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JAEA-Conf 2011-002 18. Measurement
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derive the incident neutron flux an
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W(I) Neutron Capture Cross Section
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JAEA-Conf 2011-002 19. Measurement
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layout of the RPI LINAC facility. J
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JAEA-Conf 2011-002 Fig. 2. An overv
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aHamamatsu H1942 and an H6410 photo
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μ μ μ μ μ μ μ μ μ μ μ
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JAEA-Conf 2011-002 Masayuki HAGIW
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JAEA-Conf 2011-002 remote-controlle
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Figures 8, 9, 10, 11, 12 and 13 pro
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Shusuke HIRAYAMA 1 , Yukinobu WATAN
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The measured double-differential cr
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JAEA-Conf 2011-002 Fig. 3 Compariso
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JAEA-Conf 2011-002 Measurement of d
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Fig.2. Schematic drawing of the sta
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4. Results and discussion The doubl
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24. Study of the BGO detector for t
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3. Peak efficiency calculation JAEA
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Measurementof Neutron-Production Do
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the air and stopped at a beam dump
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DDX [mb/MeV/sr] DDX [mb/MeV/sr] 2 1
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26. Neutron yields for reaction ind
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2 Experiment Figure 1 shows schemat
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ackground neutrons is expected from
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27. Comparison of Neutron Productio
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Neutron Yield [#/MeV/sr/ion] 10 0 1
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JAEA-Conf 2011-002 Yosuke IWAMOTO
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where t is a dimensionless collisio
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JAEA-Conf 2011-002 Figure 2 Damage
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JAEA-Conf 2011-002
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JAEA-Conf 2011-002
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JAEA-Conf 2011-002
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JAEA-Conf 2011-002 30. A Study of P
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2-2. Pre-equilibrium reaction model
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JAEA-Conf 2011-002 Fig. 6. The angu
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JAEA-Conf 2011-002 Hyeong
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JAEA-Conf 2011-002
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JAEA-Conf 2011-002 3. C
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JAEA-Conf 2011-002 32. Effect of Ne
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Average Total-Pu=4.9wt%U-235 Total-
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Figure 4 Comparison of Fission Rate
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JAEA-Conf 2011-002 33. Improvement
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possible energy). On the other hand
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JAEA-Conf 2011-002 4. Discussion Fi
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JAEA-Conf 2011-002 34. Improvements
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JAEA-Conf 2011-002 Table 1 Comparis
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Table.2 lists the highest priority
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JAEA-Conf 2011-002
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JAEA-Conf 2011-002
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JAEA-Conf 2011-002
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JAEA-Conf 2011-002 36. Evaluation o
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operation mode. A selection of the
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water only case (Fig.4.), however t
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JAEA-Conf 2011-002 Sensitivity Anal
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JAEA-Conf 2011-002 - pin pitch : 1.
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Figure 3 shows one-group sensitivit
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JAEA-Conf 2011-002 Sensitivity Anal
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- PU-MET-FAST-001 (Jezebel): a bare
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JAEA-Conf 2011-002 Table 1 Library
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Masahiro KIMURA, Takanori KITADA, a
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JAEA-Conf 2011-002 Summary of the
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4.0E-2 3.0E-2 2.0E-2 1.0E-2 0.0E+0
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Koichi IEYAMA, Kosuke SHIMOZATO, Ta
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We evaluated the validity of the cr
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Fig.9 165 Ho capture cross section
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JAEA-Conf 2011-002
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JAEA-Conf 2011-002
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JAEA-Conf 2011-002
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表1.SI 基本単位 SI 基本単