59NI 59CU EC DECAY 1973VA03,1977SE02 18NDS 201808 59NI H TYP=FUL$AUT=M. Shamsuzzoha Basunia$CIT=NDS 151, 1 (2018)$ 59NI2 H CUT=1-Apr-2018$ 59NI C Others: 1968LU15, 1968VE15 (for summary of EG, IG scin data), 1958Bu07, 59NI2C 1956PR12, 1955LI38, 1955YU06, 1939DE01. 59NI C Measured EG, IG, semi. 59CU produced from 58NI(P,G) using 99.9% 58NI 59NI2C target (1973VA03,1977SE02). 59NI C 1977SE02 propose a level at 1778.8 to accommodate an 59NI2C EG=1778.8 1 line which appears strongly in their spectrum (RI=0.87 2) 59NI3C but is absent from the spectrum of 1973VA03; the evaluator assumes this 59NI4C is not a 59NI line (it could plausibly arise from 28AL B- decay). 59NI5C Otherwise, agreement between 1973VA03 and 1977SE02 is excellent. 59NI CE EC+B+ branches are obtained from TI imbalance at each 59NI2CE level. Measured EC/B+ LT 5% (1955YU06). 59NI CL J,T From adopted levels. 59NI CG E,RI Weighted average of data from 1973VA03 and 1977SE02. 59NI CG M,MR From adopted gammas. 59NI CG E(A),RI(A)$Observation of a 1610G (RI=0.016 4) suggests population of 59NI2CG the 1948 level, which in turn implies that the observed 1950G 59NI3CG (RI=0.117 5) includes unresolved contributions from 1948-GS and 59NI4CG 2415-465 transitions. Assuming adopted 1948 level branching (viz. 59NI5CG I(1608G):I(1948G)=63 13:100 4), the evaluator deduces 59NI6CG RI(1948-GS)=0.073 14 leaving RI(2415-465)=0.043 13. However, the 59NI7CG observed EG=1949.90 14 corresponds to that expected for the 2415-465 59NI8CG transition alone; also, branching from 2415 level is consistent with 59NI9CG that observed in (N,G) E=thermal only if the total observed I(1950G) 59NIACG is assigned to the 2415-465 transition. The evaluator, therefore, 59NIBCG assumes that the 1950G is not a doublet, and the 1610G reported by 59NICCG 1977SE02 alone is not the same as the 1608G known from other reactions 59NIDCG to de-excite a 1948 level. 59NI CG E(B),RI(B)$Reported by 1977SE02 only. May not be a 59NI G ray. 59NI CG E(D),RI(D)$Observation of 999G (RI=0.041 10) implies population of the 59NI2CG 1338 level whose 1338G-decay branch presumably contributes to the 59NI3CG observed 1349G (RI=1.425 25). Assuming adopted 1338 level branching 59NI4CG (viz. I(999G):I(1338G)=100 5:40.3 20), evaluator deduces 59NI5CG RI(1338-GS)=0.016 4 leaving RI(1680-339)=1.409 25. 59NI DG CC$FROM BrIcc v2.3a (30-Jun-2013) 2008Ki07, "Frozen Orbitals" appr. 59NI N 1.0 1.0 1. 59NI CN NR from measured I(annihilation radiation)=196 5 (1973VA03) 59NI2CN and theoretical B+/EC ratios. 59NI PN 3 59CU P 0.0 3/2- 81.5 S 5 4798.4 4 59NI G 1610.6 5 0.016 4 A 59NI3 G FLAG=B 59NI G 2242.9 6 0.012 4 B 59NI L 0.0 3/2- 7.6E+4 Y 5 59NI E 57.5 4 0.557 7 5.0 1 58.1 4 59NIS E EAV=1721.99 20$CK=0.008515 3$CL=0.0009206 3$CM+=0.0001554 59NI CE E E(B+)=3740 100 (1956PR12), 3400 500 (1955LI38). 59NI L 339.37 5 5/2- 59NI E 5.89 10 0.0756 15 5.8 1 5.97 10 59NIS E EAV=1559.10 20$CK=0.011247 4$CL=0.0012163 5$CM+=0.000205 59NI G 339.30 7 7.97 9M1(+E2) 0.00 2 0.00213 59NIS G KC=0.00191 3$LC=0.000189 3$MC=2.67E-5 4 59NIS G NC=1.143E-6 16 59NI L 464.92 7 1/2- 59NI E 3.35 15 0.0481 22 6.0 1 3.40 15 59NIS E EAV=1499.05 20$CK=0.012554 5$CL=0.0013577 5$CM+=0.000229 59NI G 464.9 1 5.87 9 [M1] 1.03E-3 59NIS G KC=0.000923 13$LC=9.08E-5 13$MC=1.280E-5 18 59NIS G NC=5.51E-7 8 59NI L 878.00 6 3/2- 59NI E 8.6 4 0.18 1 5.3 1 8.8 4 59NIS E EAV=1302.36 20$CK=0.018602 8$CL=0.0020126 9$CM+=0.0003398 2 59NI G 538.55 14 0.160 7 59NI G 878.00 7 11.40 31M1+E2 +0.08 3 2.60E-4 59NIS G KC=0.000234 4$LC=2.28E-5 4$MC=3.22E-6 5 59NIS G NC=1.392E-7 20 59NI L 1188.93 13 5/2- 59NI E 0.110 18 0.0033 6 7.0 1 0.113 19 59NIS E EAV=1155.38 20$CK=0.02598 2$CL=0.002812 2$CM+=0.0004748 3 59NI G 850.0 5 0.035 14 ? 59NI CG E,RI obscured by sum peak (511+339 KEV). 59NI G 1188.85 25 0.379 9M1+E2 -0.43 9 1.50E-43 59NIS G KC=0.0001302 21$LC=1.267E-5 21$MC=1.79E-6 3 59NIS G NC=7.73E-8 13$IPC=5.48E-6 15 59NI L 1301.41 7 1/2- 59NI E 18.9 3 0.654 12 4.7 1 19.6 3 59NIS E EAV=1102.47 19$CK=0.02960 2$CL=0.003204 2$CM+=0.0005411 3 59NI G 423.40 7 2.66 12 59NI G 836.50 7 2.08 11[M1] 2.87E-4 59NIS G KC=0.000258 4$LC=2.52E-5 4$MC=3.55E-6 5 59NIS G NC=1.535E-7 22 59NI G 962.0 5 0.05 1 [E2] 2.65E-4 59NIS G KC=0.000238 4$LC=2.34E-5 4$MC=3.29E-6 5 59NIS G NC=1.411E-7 20 59NI G 1301.35 15 14.78 20 59NI L 1338.1 5 7/2- 59NI E 0.055 11 0.0020 4 7.2 1 0.057 11 59NIS E EAV=1085.24 30$CK=0.03093 3$CL=0.003348 3$CM+=0.0005653 5 59NI G 998.7 5 0.041 10M1+E2 +4.6 6 2.40E-4 59NIS G KC=0.000216 3$LC=2.12E-5 3$MC=2.98E-6 5 59NIS G NC=1.278E-7 19 59NI G 1338 0.016 4E2 1.63E-4 D 59NIS G KC=0.0001127 16$LC=1.098E-5 16$MC=1.547E-6 22 59NIS G NC=6.67E-8 10$IPC=3.75E-5 6 59NI L 1679.70 7 5/2- 59NI E 1.61 3 0.0920 18 5.4 1 1.70 3 59NIS E EAV=925.72 19$CK=0.04803 3$CL=0.005202 3$CM+=0.0008785 5 59NI G 1214.2 7 0.0305 7[E2] 1.66E-4 59NIS G KC=0.0001390 20$LC=1.357E-5 19$MC=1.91E-6 3 59NIS G NC=8.23E-8 12$IPC=1.105E-5 20 59NI G 1340.25 15 1.425 25 D 59NI G 1679.70 7 0.244 12(M1+E2) -1.6 +7-22 2.30E-412 59NIS G KC=6.97E-5 16$LC=6.77E-6 16$MC=9.54E-7 22 59NIS G NC=4.13E-8 10$IPC=0.000152 10 59NI L 1734.67 6 3/2- 59NI E 1.88 4 0.117 3 5.3 1 2.00 4 59NIS E EAV=900.21 19$CK=0.05187 3$CL=0.005618 4$CM+=0.0009488 6 59NI G 545.75 14 0.230 14 59NI G 1269.65 15 0.245 9 59NI G 1395.2 1 0.340 25 59NI G 1734.70 7 1.188 19 59NI L 2414.85 13 3/2- 59NI E 0.201 12 0.044 3 5.5 1 0.245 15 59NIS E EAV=589.22 19$CK=0.1598 2$CL=0.01733 2$CM+=0.002927 3 59NI G 1225.8 10 0.036 9 59NI G 1536.9 3 0.056 7 59NI G 1949.90 14 0.117 5 59NI G 2414.7 4 0.036 7 59NI L 2681.2 7 (5/2-) 59NI E 0.026 5 0.012 2 6.0 1 0.038 7 59NIS E EAV=470.40 36$CK=0.2717 5$CL=0.02949 5$CM+=0.004982 9 59NI G 1802.6 8 0.025 5 59NI G 2682 1 0.013 4