75SE    75BR EC DECAY (96.7 M)        1972CO06                  13NDS    201309
 75SE  H TYP=FUL$AUT=ALEXANDRU NEGRET, BALRAJ SINGH$CIT=NDS 114, 841 (2013)$
 75SE2 H CUT=30-Jun-2013$
 75SE C  75BR produced by the 65CU(12C,2n)75BR reaction. Enriched target.
 75SE2C  Measured G, GG, T1/2, CE.
 75SE C  Others: 1948Wo08, 1952Fu04, 1961Ba43, 1969Dz05, 1969La07, 1969Ra24,
 75SExC  1970Dz10, 1974Ro11, 1995BeZS
 75SE c  Measured ce, K-conversion coefficients: 1995BeZS
 75SE C  Measured end point energies: 1952Fu04, 1961Ba43, 1969La07, 1969Ra24,
 75SExC  1974Ro11
 75SE C  Measured T1/2(75BR GS): 1972Co06, 1969Ra24, 1969La07, 1961Ba43,
 75SExC  1957Be46, 1953Ho53
 75SE C  Measured annihilation radiation intensity: 166 11 (1969Dz05),
 75SE2C  167 10 (1972Co06)
 75SE C  Measured G(THETA,H,T): 1995Ma97
 75SE C  The decay scheme is based on GG data of 1972Co06 and some G rays from
 75SE2C  other reactions
 75SE DG CC$FROM BrIcc v2.3 (29-Mar-2013) 2008Ki07, "Frozen Orbitals" appr.
 75SE cG M,MR$From Adopted Gammas
 75SE CG E(A)$Assigned by the evaluators on the basis of (N,G)
 75SE CG E(B)$Observed only in the coincidence measurements
 75SE CG E(C)$Shown incorrectly from 1554 level by 1972Co06
 75SE cL J$ From Adopted Levels
 75BR  P 0.0         3/2-              96.7 M    13             3062      4
 75BR cP J,T$ From {+75}Br Adopted Levels
 75BR cP QP$ From 2012Wa38
 75SE  N 0.88      5 0.88    5 1.0       1.0
 75SE CN NR$from sum of TI(to GS)=96 4, based on
 75SE2CN I(G+-)=167 10 (1972Co06), the B+ feeding to GS is deduced as LT 8%
 75SE PN                                                                     3
 75SE  G 514.0     5  0.10   5                                              B
 75SE  G 579.8     3  0.10   2
 75SE  G 652.2     3  0.16   3
 75SE  G 946.2     3  0.16   3
 75SE  G 1515.8    3  0.13   2
 75SE  L 0           5/2+              119.78 D  4
 75SE cL T$from Adopted Levels
 75SE  E                 4   4    0.5  5    6.9   5             4         4
 75SES E EAV=904.3 19$CK=0.1045 6$CL=0.01189 7$CM+=0.002326 13
 75SE  L 112.16    8  7/2+
 75SE  G 112.10    10 1.90   20M1+E2     -0.31   3     0.116  8              C
 75SES G KC=0.102 7$LC=0.0121 9$MC=0.00188 14
 75SES G NC=0.000152 11
 75SE CG M,MR$ M1(+E2), |d<0.25 from EKC=0.076 13 (1995BEZS)
 75SE  L 286.55    8  3/2-             1.23 NS   15
 75SE CL T$from B(287G)(T) using delayed coincidence technique (1969Ra24).
 75SE2CL Value is 1.29 NS 15 in ^Adopted ^Levels
 75SE  E                53   3    11   1   5.39   3             64        4
 75SES E EAV=772.5 19$CK=0.1560 10$CL=0.01777 11$CM+=0.003477 21
 75SE CE           E(B+)=1720 20 (1974Ro11)
 75SE  G 286.50    20 100      E1                      0.00362               C
 75SES G KC=0.00323 5$LC=0.000338 5$MC=5.24E-5 8
 75SES G NC=4.43E-6 7
 75SE CG $ EKC=0.0028 4, measured relative to EKC for 279.2G in 203HG
 75SE2CG (1972Co06); EKC=0.0036 11, ELC=0.0003 1 (1995BEZS)
 75SE  L 293.07    8  1/2-             30 NS     3
 75SE CL E$resolved doublet of 286 suggested by authors
 75SE CL T$from delayed BG coincidence with the 287G (1972Co06). The authors
 75SE3CL erroneously assigned this half-life to the 286.5 level.
 75SE4CL Value is 30.0 NS 4 in ^Adopted ^Levels
 75SE  G 6.5       1 0.17    LT [M1]                   34.4   17 5.9      3
 75SES G L/T=0.832 22$M/T=0.129 9
 75SES G N/T=0.0108 8
 75SES G LC=29.4 15$MC=4.58 23$NC=0.382 19
 75SE CG E$from 1974Ro12, where it was incorrectly assigned to decay of {+75}Kr.
 75SE2CG A 6.2 {I4} |g ray has been seen in {+75}As(p,n) reaction
 75SE DG RI        EXPECTED TO BE HIGHLY CONVERTED. CC=34.0 3 IF M1.
 75SE CG TI$from intensity balance at the 293
 75SE2CG level. Value given is an upper limit
 75SE3CG corresponding to the assumption of no direct EC+B+ feeding to the
 75SE4CG 293 level.
 75SE  L 427.80    8  5/2-
 75SE  E                4.9  8    1.4  2   6.26   7             6.3       10
 75SES E EAV=708.1 19$CK=0.1927 12$CL=0.02196 14$CM+=0.00430 3
 75SE  G 141.19    10 7.5    6 M1+E2     -0.29   4     0.055  4              C
 75SES G KC=0.048 4$LC=0.0055 5$MC=0.00086 7
 75SES G NC=7.1E-5 6
 75SE CG M,MR$ M1(+E2), |d<0.15 from EKC=0.034 5 (1995BEZS)
 75SE  G 315.61    15 0.69   7 (E1)                    0.00277               C
 75SES G KC=0.00247 4$LC=0.000258 4$MC=4.00E-5 6
 75SES G NC=3.39E-6 5
 75SE  G 427.79    13 5.0    5 E1                      1.23E-3               C
 75SES G KC=0.001097 16$LC=0.0001143 16$MC=1.775E-5 25
 75SES G NC=1.508E-6 22
 75SE CG M,MR$ |d(E2/M1)<0.6 from EKC=0.0020 7 (1995BEZS); EKC marginally
 75SE2CG overlaps E1. |DJ|p requires E1
 75SE  L 585.99    10 3/2-
 75SE  E               1.24  14  0.48  5   6.67   5             1.72      19
 75SES E EAV=636.5 18$CK=0.2463 16$CL=0.02809 18$CM+=0.00550 4
 75SE  G 292.85    10 3.03   15M1+E2     +0.12   8     0.0063 3              C
 75SES G KC=0.00564 23$LC=0.00060 3$MC=9.4E-5 4
 75SES G NC=8.0E-6 4
 75SE CG M,MR$ M1(+E2), |d<0.55 from EKC=0.0057 18 (1995BEZS)
 75SE CG E$shown incorrectly from 579 level by 1972Co06
 75SE  G 299.4     2  0.27   4 M1(+E2)   0.4     4     0.0071 23             C
 75SES G KC=0.0063 21$LC=0.00068 24$MC=0.00011 4
 75SES G NC=9.E-6 3
 75SE CG M$ M1,E2 from EKC=0.010 6 (1995BEZS)
 75SE  G 586.1     2  0.21   3
 75SE  L 663.89    9  5/2-
 75SE  E                3.3  2    1.6  1   6.13   3             4.9       3
 75SES E EAV=601.4 18$CK=0.2786 18$CL=0.03178 21$CM+=0.00622 4
 75SE  G 236.10    10 0.90   6 M1+E2     +0.07   6     0.0107 4              C
 75SES G KC=0.0095 3$LC=0.00102 4$MC=0.000159 5
 75SES G NC=1.35E-5 5
 75SE CG $ EKC=0.016 5 (1995BEZS) gives M1+E2, |d=0.70 35
 75SE  G 377.39    11 4.47   4 M1+E2     -0.75   18    0.0046 4              C
 75SES G KC=0.0041 4$LC=0.00044 4$MC=6.8E-5 7
 75SES G NC=5.8E-6 5
 75SE CG $ EKC=0.0034 12 (1995BEZS) gives M1(+E2), |d<1.1
 75SE  G 551.65    15 0.34   4                                               C
 75SE  G 663.8     3  0.13   2
 75SE  L 748.00    19 7/2-
 75SE  E               0.08  LT  0.05  LT   7.6  GT             0.13      LT   ?
 75SES E EAV=563.7 18$CK=0.3184 21$CL=0.03634 24$CM+=0.00711 5
 75SE  G 319.7     3  0.11   2 M1+E2     +1.38   10    0.0095 3              C
 75SES G KC=0.00845 25$LC=0.00093 3$MC=0.000145 5
 75SES G NC=1.20E-5 4
 75SE  G 460.9     4  0.13   3 E2                      0.00355               C
 75SES G KC=0.00315 5$LC=0.000341 5$MC=5.30E-5 8
 75SES G NC=4.45E-6 7
 75SE  L 777.24    14 5/2-
 75SE  E               0.48  5   0.30  3   6.81   5             0.78      8
 75SES E EAV=550.6 18$CK=0.3336 22$CL=0.03807 25$CM+=0.00745 5
 75SE  G 349.2     2  0.20   5 M1+E2     +3.27   9     0.00841               C
 75SES G KC=0.00745 11$LC=0.000820 12$MC=0.0001274 19
 75SES G NC=1.059E-5 16
 75SE  G 484.4     2  0.32   4 E2                      0.00304
 75SES G KC=0.00270 4$LC=0.000291 4$MC=4.53E-5 7
 75SES G NC=3.80E-6 6
 75SE  G 490.7     2  0.37   4 (M1+E2)                 0.0024 6              C
 75SES G KC=0.0021 5$LC=0.00022 6$MC=3.5E-5 9
 75SES G NC=3.0E-6 7
 75SE  L 859.44    9    3/2-
 75SE  E                3.6  4    2.7  3   5.81   5             6.3       7
 75SES E EAV=514.0 18$CK=0.3798 24$CL=0.0434 3$CM+=0.00848 6
 75SE  G 195.5     5  0.10   3                                               C
 75SE  G 431.75    13 4.4    5 M1+E2     0.35    24    0.0026 3              C
 75SES G KC=0.0024 3$LC=0.00025 3$MC=3.9E-5 5
 75SES G NC=3.3E-6 4
 75SE CG $ EKC=0.0035 12 (1995BEZS) gives E2(+M1), |d<0.3
 75SE  G 566.43    12 0.51   5                                               C
 75SE  G 572.93    10 2.26   25E2                      0.00183               C
 75SES G KC=0.001626 23$LC=0.0001740 25$MC=2.71E-5 4
 75SES G NC=2.28E-6 4
 75SE  G 859.3     2  0.27   3
 75SE  L 895.29    25  1/2-,3/2-
 75SE  E               1.03  11  0.86  10  6.30   5             1.89      21
 75SES E EAV=498.1 18$CK=0.4016 25$CL=0.0459 3$CM+=0.00897 6
 75SE  G 309.4     3  0.10   2                                               C
 75SE  G 467.3     4  0.14   3
 75SE  G 608.9     12 1.91   20M1(+E2)                 0.0013222             C
 75SES G KC=0.00118 19$LC=0.000124 22$MC=1.9E-5 4
 75SES G NC=1.6E-6 3
 75SE  L 962.87    23 3/2-
 75SE  E               0.065 10  0.067 11  7.38   7             0.132     21
 75SES E EAV=468.2 18$CK=0.445 3$CL=0.0509 3$CM+=0.00995 6
 75SE  G 534.8     3  0.02   1                                              @
 75SE  G 676.6     3  0.13   2                                               C
 75SE  L 1002.9    3   5/2+
 75SE  E               0.12  1   0.13  2   7.06   6             0.25      3
 75SES E EAV=450.5 18$CK=0.473 3$CL=0.0540 4$CM+=0.01057 7
 75SE  G 890.7     3  0.28   3
 75SE  L 1020.49   15  1/2-,3/2-
 75SE  E               0.69  9   0.85  11  6.25   6             1.54      20
 75SES E EAV=442.7 18$CK=0.485 3$CL=0.0554 4$CM+=0.01085 7
 75SE  G 733.94    12 1.75   20(M1)                    7.35E-4               C
 75SES G KC=0.000655 10$LC=6.83E-5 10$MC=1.063E-5 15
 75SES G NC=9.10E-7 13
 75SE  L 1073.77   14 5/2-
 75SE  E               0.45  4   0.66  6   6.34   4             1.11      10
 75SES E EAV=419.3 18$CK=0.523 3$CL=0.0598 4$CM+=0.01171 7
 75SE  G 325.4     2  0.15   3                                              @
 75SEF G FLAG=A$
 75SE  G 488.1     3  0.20   4                                               C
 75SE  G 646.1     3  0.17   3                                               C
 75SE  G 781.0     3  0.12   2                                               C
 75SE  G 961.4     3  0.50   6
 75SE  G 1074.2    4  0.12   2
 75SE  L 1144.51   20  3/2+,5/2+
 75SE  E               0.062 10  0.12  2   7.05   8             0.18      3
 75SES E EAV=388.4 18$CK=0.576 3$CL=0.0658 4$CM+=0.01288 7
 75SE  G 1144.5    2  0.21   3 (M1+E2)                 3.01E-412             C
 75SES G KC=0.000266 10$LC=2.77E-5 11$MC=4.31E-6 17
 75SES G NC=3.68E-7 14$IPC=2.3E-6 4
 75SE  L 1184.38   14   1/2,3/2,5/2
 75SE  E               0.29  3   0.64  7   6.30   5             0.93      10
 75SES E EAV=371.0 18$CK=0.605 3$CL=0.0692 4$CM+=0.01355 7
 75SE  G 325.4     2  0.12   5                                              @C
 75SE  G 598.2     2  0.37   5                                               C
 75SE  G 897.60    18 0.57   6                                               C
 75SE  L 1198.61   12    5/2+
 75SE  E               0.48  5   1.11  11  6.05   5             1.59      15
 75SES E EAV=364.8 18$CK=0.616 3$CL=0.0705 4$CM+=0.01379 7
 75SE  G 534.8     3  0.13   2                                              @
 75SEF G FLAG=A$
 75SE  G 770.80    15 0.53   6 (E1(+M2))  0.012  LT                          C
 75SE  G 912.05    15 1.15   12(E1(+M2))  0.014  LT                          C
 75SE  L 1245.26   12  3/2-
 75SE  E               0.72  7   2.03  19  5.77   4             2.75      25
 75SES E EAV=344.6 18$CK=0.650 3$CL=0.0744 4$CM+=0.01457 7
 75SE  G 659.1     2  0.40   5                                               C
 75SE  G 952.10    15 1.89   20                                              C
 75SE  G 959.0     4  0.30   5                                               C
 75SE  G 1245.5    2  0.54   6
 75SE  L 1374.70   22  1/2,3/2,5/2
 75SE  E               0.053 6   0.28  3   6.57   6             0.33      4
 75SES E EAV=288.7 18$CK=0.7387 25$CL=0.0846 3$CM+=0.01656 6
 75SE  G 788.7     2  0.38   4                                               C
 75SE  L 1380.5    3
 75SE  E               0.018 3   0.096 16  7.03   8             0.114     19
 75SES E EAV=286.3 18$CK=0.7423 25$CL=0.0850 3$CM+=0.01664 6
 75SE  G 1380.5    3  0.13   2
 75SE  L 1561.04   14  (5/2,7/2-)
 75SE cL J$ 7/2- is not possible if |b feeding to this level is correct
 75SE  E               0.040 4   0.68  7   6.08   5             0.72      7
 75SES E EAV=209.3 17$CK=0.8305 15$CL=0.09527 17$CM+=0.01866 4
 75SE CE TI$no feeding is expected if JPI(1561)=7/2-
 75SE  G 701.6     2  0.21   3                                               C
 75SE  G 974.9     4  0.10   2                                              CC
 75SE  G 1448.9    2  0.37   4                                               C
 75SE  G 1561.0    3  0.14   2