IRDFF-v1-05_g.zip separated 31.08.15 by O.Gritzay using div-lib 6000 0 0 0 28058.0000 57.4376000 0 0 34 102825 1451 1 0.0 0.0 0 0 0 62825 1451 2 1.00000000 60000000.0 0 0 10 20022825 1451 3 300.000000 0.0 1 0 440 62825 1451 4 28-Ni- 58 FEI EVAL-Jul13 K.I.Zolotarev 2825 1451 5 DIST-May2014 2825 1451 6 ----IRDF-2002 MATERIAL 2825 2825 1451 7 -----INCIDENT NEUTRON DATA 2825 1451 8 ------ENDF-6 FORMAT 2825 1451 9 ******************************************************************2825 1451 10 IAEA, Feb. 2014 (A. Trkov) 2825 1451 11 Extended cross sections and covariances from 20 to 60 MeV 2825 1451 12 by TENDL-2013, renormalised for continuity. 2825 1451 13 ******************************************************************2825 1451 14 2825 1451 15 ***************************************************************** 2825 1451 16 -----Russian Reactor Dosimetry File RRDF-2013 v.46223-15 C=0.18 2825 1451 17 ***************************************************************** 2825 1451 18 Author of evaluation: K.I.Zolotarev 2825 1451 19 ***************************************************************** 2825 1451 20 MF=3 2825 1451 21 MT= 16 - Ni-58(n,2n)Ni-57 reaction 2825 1451 22 ------------------------------------- 2825 1451 23 Microscopic experimental data [1-61] were analyzed in the 2825 1451 24 process of preparation of input data base for the evaluation of 2825 1451 25 cross sections and their uncertainties for the Ni-58(n,2n)Ni-57 2825 1451 26 reaction. During this procedure experimental data of works [3-8], 2825 1451 27 [10-17], [19-27], [29-61] were corrected to the new standards for 2825 1451 28 relevant monitor reactions and to the recommended decay data for 2825 1451 29 Ni-57 [62]. 2825 1451 30 Special correction was done with experimental data [21], [28],2825 1451 31 [44] and [55]. 2825 1451 32 Original experimental data by Ngoc et al. [28] in the energy 2825 1451 33 range 13.55-14.71 MeV were corrected to the preliminary evaluated 2825 1451 34 cross-section of 29.63 mb at 14.40 MeV. 2825 1451 35 After correction to the new standards experimental data by Lu 2825 1451 36 Hanlin et al. [44] were renormalized to the preliminary evaluated 2825 1451 37 cross-section of 33.24 mb at 14.58 MeV. 2825 1451 38 Correction factors for the experimental data [28], [44] were 2825 1451 39 equal to Fc= 1.09741 and Fc= 0.88853, respectively. 2825 1451 40 Experimental data given in works [21] and [55] were corrected 2825 1451 41 with using representative experimental data of Pavlik et al. [34] 2825 1451 42 and Semkova et al. [58]. 2825 1451 43 Cross sections measured by Bayhurst et al. [21] were renorma- 2825 1451 44 lized to the integral of Ni-58(n,2n)Ni-57 reaction excitation fun-2825 1451 45 ction in the energy interval 17.23 - 20.00 MeV evaluated from the 2825 1451 46 experimental data [34] and [58], Fc= 0.88943. 2825 1451 47 Data of Uno et al. [55] measured in a wide energy range 17.60-2825 1451 48 38.30 MeV were corrected to the cross-section value of 63.76 mb 2825 1451 49 at 17.60 MeV determined from the experimental data [34] and [58], 2825 1451 50 Fc= 1.12056. 2825 1451 51 Experimental data of Bormann et al. [13] were taken into ac- 2825 1451 52 count only for the incident neutron energies 12.95 - 14.90 MeV. 2825 1451 53 Data measured at the 15.6 - 19.6 MeV energy points were rejected 2825 1451 54 due to discrepancy with the representative experimental data. 2825 1451 55 Excitation function for the Ni-58(n,2n)Ni-57 reaction in 2825 1451 56 the energy region from threshold to 60 MeV was evaluated by means 2825 1451 57 of statistical analysis of experimental cross section data [5-6], 2825 1451 58 [7-8], [10-11], [13-14], [16-17], [19-21], [23-24], [27-29], [33- 2825 1451 59 34], [36], [38-40], [42-45], [49-51], [53-58], [60-61] and data 2825 1451 60 from theoretical model calculation, which were obtained by means 2825 1451 61 of modified GNASH code [63]. 2825 1451 62 Statistical analysis of input cross section data was carried 2825 1451 63 out by means of PADE-2 code [64]. Rational function was used as 2825 1451 64 the model function [65]. 2825 1451 65 U-235 thermal fission [66] and Cf-252 spontaneous fission 2825 1451 66 neutron spectra [67] averaged cross sections calculated from the 2825 1451 67 the evaluated Ni-58(n,p)Co-58m+g excitation function are given 2825 1451 68 below in comparison with experimental data [68-70]. 2825 1451 69 2825 1451 70 ----------------------+------------------+----------------------- 2825 1451 71 TYPE OF SPECTRUM | ,mkb (calc.) | ,mkb (measured) 2825 1451 72 ----------------------+------------------+----------------------- 2825 1451 73 U-235 neutron fission | 3.3603 | 3.433 +- 0.230 [68] 2825 1451 74 | | 3.817 +- 0.210 [70] 2825 1451 75 ----------------------+------------------+----------------------- 2825 1451 76 CF-252 spont. fission | 8.5428 | 8.558 +- 0.310 [69] 2825 1451 77 ----------------------+------------------+----------------------- 2825 1451 78 2825 1451 79 MT=33 2825 1451 80 MT= 16 -(n,2n) cross section cov. matrix 2825 1451 81 ---------------------------------------- 2825 1451 82 Uncertainties in the evaluated excitation function for the 2825 1451 83 reaction Ni-58(n,2n)Ni-57 given in the form of relative covari- 2825 1451 84 ance matrix for the 48-neutron energy groups (LB=5). Covariance 2825 1451 85 matrix of uncertainties was calculated simultaneously with 2825 1451 86 recommended cross section data by means of PADE-2 code. 2825 1451 87 Eigenvalues of the 6-th digits relative covariance matrix 2825 1451 88 given in the 33-file are the following: 2825 1451 89 2825 1451 90 1.10168E-06 1.14107E-06 1.19888E-06 1.26966E-06 2825 1451 91 1.34295E-06 1.42092E-06 1.51097E-06 1.62313E-06 2825 1451 92 1.72474E-06 1.85143E-06 2.00139E-06 2.12563E-06 2825 1451 93 2.30004E-06 2.50058E-06 2.68521E-06 3.08567E-06 2825 1451 94 3.48376E-06 4.18088E-06 5.00191E-06 5.70492E-06 2825 1451 95 6.77841E-06 7.35016E-06 9.00155E-06 9.77157E-06 2825 1451 96 1.16292E-05 1.35504E-05 1.45456E-05 1.70954E-05 2825 1451 97 1.98212E-05 2.13704E-05 2.31163E-05 2.60124E-05 2825 1451 98 2.90214E-05 3.20675E-05 3.50920E-05 3.64547E-05 2825 1451 99 6.84347E-05 1.51539E-04 4.28792E-04 5.22860E-04 2825 1451 100 1.20075E-03 2.60811E-03 3.67673E-03 7.30383E-03 2825 1451 101 1.41592E-02 2.46194E-02 5.31451E-02 2.07278E-01 2825 1451 102 2825 1451 103 References: 2825 1451 104 1. E.B.Paul, R.L.Clarke, Canadian J. Phys. 31 (1953) 267 2825 1451 105 2. K.H.Purser, F.W.Titterton, Australian J. Physic 12 (1959) 103 2825 1451 106 3. I.L.Preiss, R.W.Fink, Nucl. Phys. 15 (1960) 326 2825 1451 107 4. L.A.Rayburn, Phys. Rev., 122 (1961) 168-171 2825 1451 108 5. R.J.Prestwood, B.P.Bayhurst, Phys. Rev. 121 (1961) 1438 2825 1451 109 6. R.N.Glover, E.Weigold, Nucl. Phys. 29 (1962) 309-317 2825 1451 110 7. E.T.Bramlitt, R.W.Fink, Phys. Rev. 131 (1963) 2649 2825 1451 111 8. W.G.Cross, R.L.Clare, K.Morin, G.Slinn, N.M.Ahmed, K.Beg, 2825 1451 112 Progress Report EANDC(CAN)-16, p.1, January 1963 2825 1451 113 9. J.M.F.Jeronymo et al., Nucl. Phys. 47 (1963) 157 2825 1451 114 10. A.Paulsen, H.Liskien, Nukleonik 7 (1965) 117-120 2825 1451 115 11. J.Csikai, Report EANDC-50-S (paper 102), 1965 2825 1451 116 12. S.Chojnacki et al., Progress Report INR-680, December 1965 2825 1451 117 13. M.Bormann, F.Dreyer, U.Zielinski, Prog. Report EANDC(E)-66, 2825 1451 118 p. 42, February 1966 2825 1451 119 14. J.Csikai, G.Peto, Acta Physica Hungarica 23 (1967) 87 2825 1451 120 15. J.K.Temperley, Nucl. Sci. Eng. 32 (1968) 195 2825 1451 121 16. R.C.Barrall, J.A.Holmes, M.Silbergeld, Report AFWL-TR-68-134, 2825 1451 122 Albuquerque, NM, March 1969 2825 1451 123 17. R.C.Barrall, M.Silbergeld, D.G.Gardner, Nucl. Phys. A 138 2825 1451 124 (1969) 387 2825 1451 125 18. R.W.Fink, W.-D.Lu, Bull. Am. Phys. Soc. 15 (1970) 1372(EH6) 2825 1451 126 19. J.D.Hemingway, J. Nucl. Energy 27 (1973) 241 2825 1451 127 20. J.Araminowicz, J.Dresler, Progress Report INR-1464, pp.14-18, 2825 1451 128 May 1973 2825 1451 129 21. B.P.Bayhurst et al., Phys. Rev. C 12 (1975) 451 2825 1451 130 22. R.Spangler, E.L.Draper JR., T.A.Parish, J. Trans. Amer. Nucl. 2825 1451 131 Soc. 22 (1975) 818 2825 1451 132 23. R.A.Sigg, Dissertation Abstract B 37 (1976) 2237 2825 1451 133 24. S.M.Qaim, N.I.Molla, Proc. of 9th Symposium on Fusion Techno- 2825 1451 134 logy, Garmisch, Germany, 14-18 June 1976, p.589 2825 1451 135 25. C.G.Hudson, W.L.Alford, S.K.Ghorai, Annals of Nuclear Energy 2825 1451 136 5 (1978) 589-595 2825 1451 137 26. E.W.Lees, B.H.Patrick, S.Lindley, Report AERE-R-9390, 1979 2825 1451 138 27. L.Adamski, M.Herman, A.Marcinkowski, Annals of Nucl. Energy 2825 1451 139 7 (1980) 397-401 2825 1451 140 28. P.N.Ngoc, S.Gueth, F.Deak, A.Kiss, EXFOR 30562016, 1980 2825 1451 141 29. P.Raics et al., Atomki Koezlemenyek 23 (1981) 45 2825 1451 142 30. R.C.Harper, W.L.Alford, J. of Phys. G 8 (1982) 153 2825 1451 143 31. J.Csikai, Proc. of Int. Conf. on Nuclear Data for Science and 2825 1451 144 Technology, 6-10 September 1982, Antwerp, Holland, D.Reidel 2825 1451 145 Publishing Company, 1983, p.414 2825 1451 146 32. N.T.Molla et al., Prog. Report INDC(BAN)-002, p.1, Feb. 1983 2825 1451 147 33. B.M.Bahal, R.Pepelnik, Report GKSS-84-E-, 1985 2825 1451 148 34. A.Pavlik et al., Nucl. Sci. Eng. 90 (1985) 186 2825 1451 149 35. K.Kobayashi, I.Kimura, Prog. Report NEANDC(J)-116, Sep. 1985 2825 1451 150 36. I.Garlea et al., Rev. of Roumaine de Physique 30 (1985) 673 2825 1451 151 37. I.Ribansky et al., Report INDC(CSR)-7, June 1985 2825 1451 152 38. J.Rama Rao et al., Nucl. Instr. Methods B17 (1986) 370 2825 1451 153 39. J.W.Meadows et al., Annals of Nucl. Energy 14 (1987) 489 2825 1451 154 40. L.R.Greenwood, Report ASTM-STP-956, pp.743-749, 1987 2825 1451 155 41. Zhou Muyao et al., Chinese J. of Nucl. Phys. 9 (1987) 34 2825 1451 156 42. Y.Ikeda et al., Report JAERI-1312, March 1988 2825 1451 157 43. K.Kobayashi, I.Kimura, Proc. of an Int. Conf. on Nuclear Data 2825 1451 158 for Science and Technology, 30 May - 3 June 1988, Mito, Japan,2825 1451 159 Saikon Publishing Co., LTD, pp.261-265, 1989 2825 1451 160 44. Lu Hanlin et al., Report INDC(CPR)-16, IAEA, Vienna, 1989 2825 1451 161 45. Li Guozheng, Jiang Jinghe, Chinese J. High Energy Physics 2825 1451 162 and Nuclear Physics 14 (1990) 1023 2825 1451 163 46. M.Viennot et al., Nucl. Sci. Eng. 108 (1991) 289-301 2825 1451 164 47. A.Ercan et al., Proc. of an Int. Conf. on Nuclear Data for 2825 1451 165 Sci. and Technology, Juelich, FRG, 13-17 May 1991, Springer- 2825 1451 166 Verlag, 1992, p.376 2825 1451 167 48. N.I.Molla et al., Proc. of Int. Conf. on Nuclear Data for 2825 1451 168 Sci. and Technology, Juelich, FRG, 13-17 May 1991, Springer- 2825 1451 169 Verlag, 1992, pp.355-357 2825 1451 170 49. I.Garlea et al., Rev. of Roumaine de Physique 37 (1992) 19-25 2825 1451 171 50. M.Belgaid et al., J. of Radioanalytical and Nuclear Nuclear 2825 1451 172 Chemistry Letters 166 (1992) 493 2825 1451 173 51. Yuan Junqian et al., Chinese J. High Energy Physics and Nuc- 2825 1451 174 lear Physics 16 (1992) 57 2825 1451 175 52. M.Sakuma, S.Iwasaki, H.Shimada et al., Report JAERI-M-92-027, 2825 1451 176 p.278, 1992 2825 1451 177 53. G.R.Pansare, V.N.Bhoraskar, Internat. J. of Modern Physics E 2825 1451 178 E 2 (1993) 259 2825 1451 179 54. S.Iwasaki, S.Matsuyama, T.Ohkubo et al., Proc. of Int. Conf. 2825 1451 180 on Nuclear Data for Science and Technology, Gatlinburg, TN, 2825 1451 181 USA, 9-13 May 1994, vol. 1, pp.305-307, 1994 2825 1451 182 55. Y.Uno et al., Nucl. Sci. Eng. 122 (1996) 247-257 2825 1451 183 56. K.T.Osman, F.I.Habbani, Report INDC(SUD)-001, IAEA, Vienna, 2825 1451 184 October 1996 2825 1451 185 57. A.A.Filatenkov, S.V.Chuvaev, Preprit RI-252, M.: CNIIAtom- 2825 1451 186 inform, Moscow 1999 2825 1451 187 58. V.Semkova et al., Nucl. Phys. A730 (2004) 255 2825 1451 188 59. A.K.M.Harun-Ar-Rashid et al., Indian J. Phys. 80 (2006) 737 2825 1451 189 60. W.Mannhart, D.Schmidt, Report PTB-N-53, Braunschweig, 2007 2825 1451 190 61. M.Hafiz, Indian J. of Pure and Applied Phys., 45 (2007) 425 2825 1451 191 62. M.R.Bhat, Nuclear Data Sheets 85 (1998) 415 2825 1451 192 63. G.Y.Tertychnyj, E.L.Trykov, Modified version of GNASH code. 2825 1451 193 Private communication, IPPE, Obninsk, May 1999 2825 1451 194 64. S.A.Badikov et al., Preprint FEI-1686, Obninsk, 1985 2825 1451 195 65. S.Badikov, N.Rabotnov, K.Zolotarev, Proc. of NEANSC Speciali- 2825 1451 196 st's. Meeting on Evaluation and Processing of Covariance Data,2825 1451 197 Oak Ridge, USA, 1992, OECD, Paris, 1993, p.105 2825 1451 198 66. P.G.Young et al., Evaluated Neutron Data for Uranium-235, 2825 1451 199 ENDF/B-VII.1 Library, MAT=9228, MF=5, MT=18, eval. Sept. 2006 2825 1451 200 67. W.Mannhart, Report, INDC(NDS)-220/L,p.158, IAEA, Vienna, 1989 2825 1451 201 68. K.Kobayashi, I.Kimura, Progress report NEANDC(J)-67U, p. 42, 2825 1451 202 September 1980 2825 1451 203 69. W.Mannhart, Proc. of Int. Conf. on Nuclear Data for Science 2825 1451 204 and Technology, 6-10 September 1982, Antwerp, Holland, D.Rei- 2825 1451 205 del Publishing Company, pp.429-435 2825 1451 206 70. O.Horibe, H.Chatani, Proc. of Int. Conf. on Nuclear Data for 2825 1451 207 Sci. and Technology, Julich, FRG, 13-17 May 1991, Springer- 2825 1451 208 Verlag, 1992, pp.68-70 2825 1451 209 ******************************************************************2825 1451 210 ------Russian Reactor Dosimetry File RRDF-2002 2825 1451 211 ***************************************************************** 2825 1451 212 Author of evaluation: K.I.Zolotarev 2825 1451 213 ***************************************************************** 2825 1451 214 MF=3 2825 1451 215 MT=103 - Ni58(n,p)Co58m+g reaction 2825 1451 216 2825 1451 217 Microscopic experimental data [1-64] were analyzed in the 2825 1451 218 process of preparation of input data base for the evaluation of 2825 1451 219 cross sections and their uncertainty for the Ni-58(n,p)Co-58m+g 2825 1451 220 reaction. During this procedure all experimental data if it was 2825 1451 221 possible were corrected to the new recommended cross section data 2825 1451 222 for monitor reactions used in the measurements and to the new re- 2825 1451 223 commended decay data. 2825 1451 224 Excitation function for the Ni-58(n,p)Co-58m+g reaction in 2825 1451 225 the energy region from threshold to 20 MeV was evaluated by means 2825 1451 226 of statistical analysis of experimental cross section data [1-41].2825 1451 227 Special correction was done with experimental data [9], [12], 2825 1451 228 [13], [15], [16], [20], [23], [26], [34], [35]. Experimental data 2825 1451 229 of Decowski et al. [9] corresponding to the neutron energy region 2825 1451 230 12.42 - 17.08 MeV were renormalized to the preliminary evaluated 2825 1451 231 cross section value at En=14.77 MeV. Original cross sections from 2825 1451 232 ref. [9] were multiplied to the correction factor Fc=0.53807 . 2825 1451 233 Data of Paulsen and Widera [12] measured in the energy ranges 2825 1451 234 3.35 - 6.27 MeV and 12.8 - 16.4 MeV were corrected to the preli- 2825 1451 235 minary evaluated cross section value at 6.3 MeV and integral of 2825 1451 236 cross section in the energy interval 14-15 MeV. The correction 2825 1451 237 factors for the experimental data [12] were Fc=1.059 and Fc=1.058,2825 1451 238 respectively. 2825 1451 239 Data of Smith and Meadows [13] measured with using neutrons 2825 1451 240 from D(d,n)He3 reaction were renormalized to the results of this 2825 1451 241 experiment obtained with Li7(p,n)Be7 neutron source in the over- 2825 1451 242 lapping interval 5.398 - 5.870 MeV. D(d,n)He3 data in the energy 2825 1451 243 range 5.398 - 9.897 MeV were increased to the factor Fc=1.083 . 2825 1451 244 Data of Wu and Chou [15] and Husain and Hunt [20] were also 2825 1451 245 renormalized to the Smith and Meadows measurements carried out 2825 1451 246 with Li7(p,n)Be7 neutron source. Correction factors for experi- 2825 1451 247 mental data were Fc=1.04592 [15] and Fc=1.03634 [20]. 2825 1451 248 Cross sections measured by Hudson et al. [16] in the energy 2825 1451 249 range 13.3 - 17.10 MeV were corrected to Filatenkov et al. experi-2825 1451 250 mental data at 14.1 MeV [40], Fc=0.95367. 2825 1451 251 Experimental data of Rondio et al. [23,26] were corrected to 2825 1451 252 the preliminary evaluated Ni-58(n,p)Co-58m+g reaction cross sec- 2825 1451 253 tion integral in the energy interval 17.3 - 18.5 MeV (Fc=0.1889). 2825 1451 254 Data of Yuan Junqian et al. [34] and Li Tingyan et al. [35] 2825 1451 255 were multiplied to the factors Fc=0.9000 and Fc=0.9259 , respec- 2825 1451 256 tively, using preliminary evaluated cross section integral in the 2825 1451 257 energy interval 13.6 - 14.6 MeV. 2825 1451 258 Experimental cross section data [42-64] were rejected due to 2825 1451 259 their discrepancy with the main bulk of experimental data [1-41]. 2825 1451 260 Data of Decowski et al. [9] obtained in the neutron energy range 2825 1451 261 from 1.95 to 4.79 MeV were rejected for the same reason. In the 2825 1451 262 rejected experiments [42-43], [51-55], [57-60], [62-64] the cross 2825 1451 263 section values were measured only in a one energy point in the 2825 1451 264 interval 14 - 15 MeV. 2825 1451 265 Statistical analysis of input cross section data was carried 2825 1451 266 out by means of PADE-2 code [65]. Rational function was used as 2825 1451 267 the model function [66]. 2825 1451 268 U-235 thermal fission [67] and Cf-252 spontaneous fission 2825 1451 269 neutron spectra [68] averaged cross sections calculated from the 2825 1451 270 the evaluated Ni-58(n,p)Co-58m+g excitation function are the 2825 1451 271 following: 2825 1451 272 2825 1451 273 ---------------------------------------------------------------- 2825 1451 274 TYPE OF SPECTRUM I ,mb (calc.) I , mb (measured) 2825 1451 275 ---------------------------------------------------------------- 2825 1451 276 U-235 neutron fission I 107.44 I 108.9 +- 5.2 [69] 2825 1451 277 I I 106.0 +- 7.0 [70] 2825 1451 278 I I 108.5 +- 1.4 [71] 2825 1451 279 ---------------------------------------------------------------- 2825 1451 280 Cf-252 spont. fission I 117.36 I 117.6 +- 1.5 [72] 2825 1451 281 I I 117.5 +- 1.53 [73] 2825 1451 282 ---------------------------------------------------------------- 2825 1451 283 2825 1451 284 MT=33 2825 1451 285 MT=103 -(n,p) cross section cov. matrix 2825 1451 286 --------------------------------------- 2825 1451 287 Uncertainties in the evaluated excitation function for the 2825 1451 288 reaction Ni-58(n,p)Co-58m+g are given in the form of relative co- 2825 1451 289 variance matrix for the 37-neutron energy groups (LB=5). Covari- 2825 1451 290 ance matrix of uncertainties was calculated simultaneously with 2825 1451 291 recommended cross section data by means of PADE-2 code. 2825 1451 292 Eigenvalues of the 6-th digits relative covariance matrix 2825 1451 293 given in the 33-file are the following: 2825 1451 294 2825 1451 295 3.02525E-08 3.04415E-08 3.07179E-08 3.11702E-08 2825 1451 296 3.17809E-08 3.24784E-08 3.36976E-08 3.53449E-08 2825 1451 297 3.74027E-08 4.12908E-08 4.46423E-08 5.24310E-08 2825 1451 298 5.88770E-08 7.22029E-08 8.98365E-08 1.06273E-07 2825 1451 299 1.47057E-07 1.97171E-07 2.32636E-07 3.12653E-07 2825 1451 300 4.31346E-07 5.83111E-07 7.69089E-07 9.84635E-07 2825 1451 301 1.17764E-06 1.35691E-06 6.11687E-05 6.46368E-04 2825 1451 302 7.13990E-04 1.20451E-03 1.41032E-03 1.54898E-03 2825 1451 303 2.03298E-03 3.77118E-03 4.31020E-03 5.28282E-03 2825 1451 304 3.31282E-02 2825 1451 305 2825 1451 306 References: 2825 1451 307 1. I.Kumabe, R.W.Fink Nucl. Phys., v.15, p.316, February 1960 2825 1451 308 2. R.N.Glover, E.Weigold Nucl. Phys., v.29, p.309, 1962 2825 1451 309 3. J.F.Barry J. Nucl. Energy AB, v.16, p.467, 1962 2825 1451 310 4. W.G.Cross et al. Progress Report EANDC(CAN)-16, p.1, 2825 1451 311 January 1963 2825 1451 312 5. J.W.Meadows, J.F.Whalen Phys. Rev., v.130, p.2022, 1963 2825 1451 313 6. K.Debertin, E.Rossle Nucl. Phys., v.70, p.89, August 1965 2825 1451 314 7. M.Bormann et al. Zeitschrift f. Naturforschung, section A, 2825 1451 315 v.21, p.988, 1966 ; 2825 1451 316 8. A.Paulsen, H.Liskien Proc. of the 1-st IAEA Conference on 2825 1451 317 Nuclear Data for Reactors, Paris, 17-21 October 1966, p.217 2825 1451 318 9. P.Decowski et al. Nucl. Phys. A, v.112, p.513, May 1968 2825 1451 319 10. R.C.Barrall et al. Report AFWL-TR-68-134, Albuquerque, NM, 2825 1451 320 March 1969 2825 1451 321 11. R.W.Fink, W.-D.Lu Bull. Amer. Phys. Soc., v.15, p.1372(EH6), 2825 1451 322 July 1970 2825 1451 323 12. A.Paulsen, R.Widera Proc. of Conference on Chemical Nuclear 2825 1451 324 Data, Measurements and Applicat., Univ. of Kent, Canterbury, 2825 1451 325 20-22 September 1971, p.129 2825 1451 326 13. D.L.Smith,J.W.Meadows Nucl. Sci. Eng., v.58, p.314, Nov. 1975 2825 1451 327 14. R.A.Sigg Dissertation Abstracts section B, v.37, p.2237, 2825 1451 328 November 1976 2825 1451 329 15. M.W.Wu, J.C.Chou Nucl. Sci. Eng., v.63, p.268, 1977 2825 1451 330 16. C.G.Hudson et al. Annals of Nuclear Energy, v.5, p.589, 1978 2825 1451 331 17. M.T.Swinhoe, C.A.Uttley Report AERE-R-9929, September 1980 2825 1451 332 18. P.N.Ngoc et al. Nukleonika, v.29, p.87, 1984 2825 1451 333 19. P.Raics et al. Atomki Koezlemenyek, v.23, p.45, June 1981 2825 1451 334 20. H.A.Husain, S.E.Hunt Internat. J. of Applied Radiation and 2825 1451 335 Isotopes, v.34, n.4, p.731, 1983 2825 1451 336 21. A.Pavlik et al. Nucl. Sci. Eng., v.90, p.186, June 1985 2825 1451 337 22. Lu Hanlin et al. Chinese J. of Nuclear Physics, v.7, n.3, 2825 1451 338 p.242, August 1985; 2825 1451 339 Lu Hanlin et al. Report INDC(CPR)-16, September 1989 2825 1451 340 23. J.Rondio et al. Journ. Phys. G: Nucl. Part. Phys., v.11, 2825 1451 341 pp.549-564, March 1985 2825 1451 342 24. N.V.Kornilov et al. Atomnaya Energiya, v.58, n.2, p.128, 1985 2825 1451 343 25. L.R.Greenwood Progress Report ASTM-STP-956, p.743, 1987 2825 1451 344 26. J.Rondio et al. Acta Physica Polonica Section B, v.20, 2825 1451 345 No.7, p.627, 1987 ; 2825 1451 346 J.Rondio et al. Acta Physica Polonica Section B, v.18, 2825 1451 347 p.1065, November 1987 2825 1451 348 27. Y.Ikeda et al. Report JAERI-1312, March 1988 2825 1451 349 28. H.Vonach, M.Wagner, R.C.Haight Report NEANDC-259, p.165, 2825 1451 350 September 1989 2825 1451 351 29. S.Cabral, G.Boerker, H.Klein, W.Mannhart 2825 1451 352 Nucl. Sci. Eng., v.106, p.308, 1990 2825 1451 353 30. Y.Ikeda et al. Prog. Report NEANDC(J)-155, p.11, August, 1990 2825 1451 354 31. D.L.Smith, J.W.Meadows, H.Vonach, M.Wagner, R.C.Haight, 2825 1451 355 W.Mannhart Proc. of Int. Conf. on Nuclear Data for Science 2825 1451 356 and Technology, Juelich, Germany, 13 - 17 May 1991, p.282 2825 1451 357 32. M.Viennot et al. Nucl. Sci. Eng., v.108, p.289, July 1991 2825 1451 358 33. P.M.Dighe et al. Journ. Phys. G: Nucl. Part. Phys., v.17, 2825 1451 359 p.169-172, 1991 2825 1451 360 34. Yuan Junqian et al. High Energy Physics and Nuclear Physics, 2825 1451 361 v.16(1), p.57, January 1992 2825 1451 362 35. Li Tingyan et.al. Chinese J. High Energy Physics and Nuclear 2825 1451 363 Physics, v.16, n.2, p.151, Feb.1992 2825 1451 364 36. Cs.M.Buczko, J.Csikai et al. Physical Review C, v.52, no.4, 2825 1451 365 p.1940, 1995 2825 1451 366 37. K.T.Osman, F.I.Habbani Report INDC(SUD)-001,Distr.L, IAEA, 2825 1451 367 Vienna, October 1996 2825 1451 368 38. J.Cezar Suita et al. Nucl. Sci. Eng., v.126, p.101, 1997 2825 1451 369 39. Lu Hanlin et al. 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Conf. on Nuclear 2825 1451 398 Data for Science and Technology, 30 May - 3 June 1988, Mito, 2825 1451 399 Japan, Saikon Publishing Co., LTD, pp.261-265, 1989 2825 1451 400 61. N.I.Molla et al. Proc. of Int. Conf. on Nuclear Data for 2825 1451 401 Science and Technology, Juelich, FRG, 13-17 May 1991, p. 355 2825 1451 402 62. A.Ercan et.al. Proc. of an Intern. Conf. on Nuclear Data for 2825 1451 403 Science and Technology, 13-17 May 1991, Julich, FRG, Springer-2825 1451 404 Verlag, 1992 2825 1451 405 63. I.Garlea et al. Rev. Roum. Phys., v.37, no.1, pp.19-25, 1992 2825 1451 406 64. L.I.Klochkova et al. Vop. At. Nauki i Tekhn., Ser. Yadernye 2825 1451 407 Konstanty, v.1, p.27, 1992 2825 1451 408 65. S.A.Badikov et al. Preprint FEI-1686, Obninsk, 1985 2825 1451 409 66. S.Badikov, N.Rabotnov, K.Zolotarev Proc. of NEANSC Speciali- 2825 1451 410 st's Meeting on Evaluation and Processing of Covariance Data, 2825 1451 411 Oak Ridge, USA, 1992, OECD, Paris, 1993, p.105 2825 1451 412 67. 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W.Mannhart Validation of Differential Cross Sections with 2825 1451 423 Integral Data , Report INDC(NDS)-435, pp.59-64, IAEA, Vienna, 2825 1451 424 September 2002 2825 1451 425 ***************************************************************** 2825 1451 426 The Q values and threshold energies were updated prior to pro- 2825 1451 427 cessing through the codes to comply with the values obtained 2825 1451 428 using the NNDC calculation program which is based on the 1995 2825 1451 429 Update to the Atomic mass Evaluation. 2825 1451 430 2825 1451 431 Psuedo Threshold of 1.0E+5 changed to 4.0E+5 ev in MF/MT=3/103 2825 1451 432 in original input file before processing through codes. 2825 1451 433 2825 1451 434 File 2 added to the pointwise file containing only the effective 2825 1451 435 scattering radius with no resonance parameters given. 2825 1451 436 Taken from ENDF/B-VI 2825 1451 437 ***************************************************************** 2825 1451 438 ***************** Program LINEAR (VERSION 2012-1) ***************2825 1451 439 For All Data Greater than 1.0000D-10 barns in Absolute Value 2825 1451 440 Data Linearized to Within an Accuracy of .100000000 per-cent 2825 1451 441 ***************** Program GROUPIE (VERSION 2012-1) **************2825 1451 442 Unshielded Group Averages Using 640 Groups 2825 1451 443 Weighting Spectrum: Flat (Constant) Spectrum 2825 1451 444 1 451 439 02825 1451 445 2 151 4 02825 1451 446 3 16 96 02825 1451 447 3 103 56 02825 1451 448 33 16 216 02825 1451 449 33 103 140 02825 1451 450 2825 1 0 451 2825 0 0 452 28058.0000 57.4380000 0 0 1 02825 2151 453 2.805800+4 1.000000+0 0 0 1 02825 2151 454 1.000000-5 8.120000+5 0 0 0 02825 2151 455 0.000000+0 6.400000-1 0 0 0 02825 2151 456 2825 2 0 457 2825 0 0 458 28058.0000 57.4377000 0 0 0 02825 3 16 459 -12217000.0-12217000.0 0 0 1 772825 3 16 460 77 1 2825 3 16 461 12400000.0 9.69679E-5 12500000.0 4.73029E-4 12600000.0 .0010496572825 3 16 462 12700000.0 .001878675 12800000.0 .002806465 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