ADOPTED LEVELS, GAMMAS for 110Ag

Authors: G. G~urdal and F.G. Kondev  Citation: Nucl. Data Sheets 113, 1315 (2012)  Cutoff date: 1-Aug-2011

Full ENSDF file

Q(β-)=2891.0 keV 13S(n)= 6809.19 keV 10S(p)= 7140.1 keV 14Q(α)= -3521 keV 6
Reference: 2012WA38

References:
  A  110Ag IT decay (249.83 d)  B  109Ag(n,γ) E=THERMAL
  C  109Ag(n,γ) E=5.2 EV RES  D  109Ag(d,p)
  E  110Pd(p,nγ), 109Ag(d,pγ)  F  176Yb(28Si,xγ)

E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final level
     0.0ABC EF 1+ 24.56 s 11 
% β- = 99.70 6
% ε = 0.30 6
     
     1.112 16 AB DEF 2- 660 ns 40       1.112 16 
  100
E1
     0.0
1+
   117.59 5 A   EF 6+ 249.83 d 4 
% IT = 1.33 8
% β- = 98.67 8
   116.48 5 
  100
M4
     1.112
2-
   118.719 10  B  E  3+ 36.6 ns 6     117.607 17 
   118.716 17 
  100
 
E1(+M2)

     1.112
     0.0
2-
1+
   191.622 12  B  E  3+       72.903 11 
   191.2 5 
  100
  100
M1
(E2)
   118.719
     0.0
3+
1+
   198.689 10  B  E  2+ < 0.08 ns    197.58 3 
   198.69 3 
 
  100

M1(+E2)
     1.112
     0.0
2-
1+
   236.859 12  B D   1- < 0.24 ns    235.75 3 
  100
M1
     1.112
2-
   237.069 11  B DE  (1,2,3+) 0.43 ns 8     235.94 4 
   237.05 4 
 
  100


     1.112
     0.0
2-
1+
   242.09 21      F (6-)      124.5 2 
  100

   117.59
6+
   242.09+X     F (7-)        
   267.229 10  B  E  1+,2+ < 0.08 ns     68.552 10 
   266.11 4 
   267.22 4 
   13 3 
  100 11 
   24.6 25 
M1(+E2)

(M1)
   198.689
     1.112
     0.0
2+
2-
1+
   269 4    D   1-,2-,3-        
   271.470 13  B  E  2+,3+,4+       79.847 12 
   152.755 22 
  100 10 
   26 5 
M1(+E2)
M1(+E2)
   191.622
   118.719
3+
3+
   293.3+X 4      F (8-)       51.2 4 
  100

   242.09+X
(7-)
   302.1 4     E  (1+,2,3+)      110.5 5 
   302.0 5 
 
 


   191.622
     0.0
3+
1+
   304.525 10  B  E  1+,2+,3+ < 0.16 ns    105.824 15 
   304.538 15 
  100
 
M1

   198.689
     0.0
2+
1+
   338.960 14  B DE  0-,1- < 0.08 ns    101.856 15 
   337.80 5 
   338.92 5 
 
 
 



   237.069
     1.112
     0.0
(1,2,3+)
2-
1+
   360.618 10  BC E  1+,2+ < 0.04 ns     93.402 14 
   123.571 18 
   123.766 18 
   161.920 24 
   359.51 5 
   360.62 5 
  100 10 
 
 
   26 5 
 
 
M1(+E2)


M1(+E2)


   267.229
   237.069
   236.859
   198.689
     1.112
     0.0
1+,2+
(1,2,3+)
1-
2+
2-
1+
   381.207 12  BCDE  1-,2- < 0.42 ns    113.976 17 
   144.148 21 
   144.342 21 
   380.09 6 
   381.20 6 
 
  ≤12
  ≤12
   24
  100





   267.229
   237.069
   236.859
     1.112
     0.0
1+,2+
(1,2,3+)
1-
2-
1+
   411.973 24  B     (1+,2,3+)      220.35 3 
   293.26 4 
   411.96 6 
 
 
 



   191.622
   118.719
     0.0
3+
3+
1+
   424.721 16  BC E  (1,2,3+) < 0.13 ns    157.488 23 
   187.65 3 
   423.60 6 
   424.71 6 
 
 
 
 




   267.229
   237.069
     1.112
     0.0
1+,2+
(1,2,3+)
2-
1+
   432.376 15  B DE  (2)- < 0.08 ns    165.138 24 
   195.52 3 
   233.67 3 
   240.76 4 
   313.64 5 
   431.38 6 
 
  100
 
 
 
 






   267.229
   236.859
   198.689
   191.622
   118.719
     1.112
1+,2+
1-
2+
3+
3+
2-
   446.6 B     0.86 ns 6       
   456.53 3  B     (2+,3,4+)      185.07 3 
   337.80 5 
 
 


   271.470
   118.719
2+,3+,4+
3+
   466.885 21  B     (1+,2,3+)      162.371 24 
   275.23 4 
   348.17 5 
 
 
 



   304.525
   191.622
   118.719
1+,2+,3+
3+
3+
   468.850 12  B     (1+,2,3) 0.22 ns 5     108.229 16 
   164.316 24 
   197.38 3 
   231.77 3 
   270.15 4 
   350.12 5 
 
 
 
 
 
 






   360.618
   304.525
   271.470
   237.069
   198.689
   118.719
1+,2+
1+,2+,3+
2+,3+,4+
(1,2,3+)
2+
3+
   471.239 19  B     (1,2,3)      166.710 24 
   234.18 3 
   272.54 4 
  100
 
 



   304.525
   237.069
   198.689
1+,2+,3+
(1,2,3+)
2+
   484 4   CD   0-,1-        
   484.40+X 20      F (9-)      191.1 2 
  100

   293.3+X
(8-)
   485.737 13  BC    (1+,2,3-) < 0.1 ns    125.155 18 
   181.27 3 
   218.57 3 
   248.91 4 
   287.08 4 
   294.12 4 
   367.05 5 
  100
 
 
 
 
 
 
M1+E2






   360.618
   304.525
   267.229
   236.859
   198.689
   191.622
   118.719
1+,2+
1+,2+,3+
1+,2+
1-
2+
3+
3+
   496.886 13  BCD   (1,2,3+) < 0.08 ns    115.685 17 
   229.66 3 
   259.82 4 
   260.02 4 
   298.18 4 
   495.76 7 
   496.87 7 
 
 
 
 
 
 
 







   381.207
   267.229
   237.069
   236.859
   198.689
     1.112
     0.0
1-,2-
1+,2+
(1,2,3+)
1-
2+
2-
1+
   525.677 17  B     (1,2,3-) < 0.08 ns    186.76 3 
   288.62 4 
   288.82 4 
   326.97 5 
   524.54 8 
 
 
 
 
 





   338.960
   237.069
   236.859
   198.689
     1.112
0-,1-
(1,2,3+)
1-
2+
2-
   527.428 16  BC    (1+,2,3-) < 0.4 ns    166.891 24 
   188.17 3 
   256.03 4 
   328.80 5 
   335.91 5 
   408.79 6 
   526.39 8 
 
 
 
 
 
 
 







   360.618
   338.960
   271.470
   198.689
   191.622
   118.719
     1.112
1+,2+
0-,1-
2+,3+,4+
2+
3+
3+
2-
   536.209 13  B D   0-,1- < 0.16 ns    175.56 3 
   231.66 3 
   268.96 4 
   299.33 4 
   536.16 8 
 
 
 
 
 





   360.618
   304.525
   267.229
   236.859
     0.0
1+,2+
1+,2+,3+
1+,2+
1-
1+
   540 3  BC    < 0.1 ns    540 3 
 

     0.0
1+
   549.397 13  B  E  (1,2,3) < 0.08 ns    188.77 3 
   244.85 4 
   277.88 4 
   282.16 4 
   312.53 5 
   549.38 8 
 
 
 
 
 
 






   360.618
   304.525
   271.470
   267.229
   236.859
     0.0
1+,2+
1+,2+,3+
2+,3+,4+
1+,2+
1-
1+
   557.1 B     < 0.34 ns      
   586.8 5     E       586.8 5 
 

     0.0
1+
   589.8 B     < 0.14 ns      
   592.9 B D   1-,2-,3- < 0.34 ns      
   595.05 4  BCD   1-,2- < 0.16 ns    358.00 5 
   358.17 5 
   593.91 9 
   595.07 9 
 
 
 
 




   237.069
   236.859
     1.112
     0.0
(1,2,3+)
1-
2-
1+
   613.058 25  B     < 0.07 ns    231.84 3 
   274.12 4 
   494.33 7 
 
 
 



   381.207
   338.960
   118.719
1-,2-
0-,1-
3+
   615.137 23  B     (1,2,3) < 0.06 ns    182.76 3 
   254.51 4 
   378.08 6 
   378.28 6 
   614.04 9 
 
 
 
 
 





   432.376
   360.618
   237.069
   236.859
     1.112
(2)-
1+,2+
(1,2,3+)
1-
2-
   633.442 18  B     < 0.14 ns    136.555 20 
   252.24 4 
   272.82 4 
   366.21 5 
   396.39 6 
  100
 
 
 
 





   496.886
   381.207
   360.618
   267.229
   237.069
(1,2,3+)
1-,2-
1+,2+
1+,2+
(1,2,3+)
   653.929 17  B  E  (1+,2,3+) < 0.36 ns    157.043 23 
   185.07 3 
   315.05 5 
   417.06 6 
   462.29 7 
   652.76 10 
 
 
 
 
 
 






   496.886
   468.850
   338.960
   236.859
   191.622
     1.112
(1,2,3+)
(1+,2,3)
0-,1-
1-
3+
2-
   663.463 16  B D   (1-,2-,3-) < 0.22 ns    114.082 17 
   177.69 3 
   194.61 3 
   302.84 4 
   358.93 5 
   464.78 7 
   662.27 10 
 
 
 
 
 
 
 







   549.397
   485.737
   468.850
   360.618
   304.525
   198.689
     1.112
(1,2,3)
(1+,2,3-)
(1+,2,3)
1+,2+
1+,2+,3+
2+
2-
   664.935 22  B D   (1-,2-,3-) < 0.5 ns    283.73 4 
   304.30 5 
   326.01 5 
   393.49 6 
   427.87 6 
   428.06 6 
   466.22 7 
   663.75 10 
 
 
 
 
 
 
 
 








   381.207
   360.618
   338.960
   271.470
   237.069
   236.859
   198.689
     1.112
1-,2-
1+,2+
0-,1-
2+,3+,4+
(1,2,3+)
1-
2+
2-
   683.152 19  B     (1,2,3) < 0.46 ns    157.488 23 
   214.29 3 
   322.52 5 
   378.62 6 
   415.91 6 
   484.45 7 
 
 
 
 
 
 






   525.677
   468.850
   360.618
   304.525
   267.229
   198.689
(1,2,3-)
(1+,2,3)
1+,2+
1+,2+,3+
1+,2+
2+
   689.47 4  B     (1+,2,3+) < 0.46 ns    232.94 3 
   422.23 6 
   570.76 8 
 
 
 



   456.53
   267.229
   118.719
(2+,3,4+)
1+,2+
3+
   698.561 15  B     < 0.16 ns    149.168 22 
   162.371 24 
   201.68 3 
   212.77 3 
   273.85 4 
   317.34 5 
   337.95 5 
   461.51 7 
   698.58 10 
 
 
 
 
 
 
 
 
 









   549.397
   536.209
   496.886
   485.737
   424.721
   381.207
   360.618
   237.069
     0.0
(1,2,3)
0-,1-
(1,2,3+)
(1+,2,3-)
(1,2,3+)
1-,2-
1+,2+
(1,2,3+)
1+
   706.214 16  B     (1+,2,3+)      156.754 23 
   169.923 25 
   220.85 3 
   237.28 4 
   345.50 5 
   434.65 6 
   507.41 7 
   514.45 8 
   587.46 9 
 
 
 
 
 
 
 
 
 









   549.397
   536.209
   485.737
   468.850
   360.618
   271.470
   198.689
   191.622
   118.719
(1,2,3)
0-,1-
(1+,2,3-)
(1+,2,3)
1+,2+
2+,3+,4+
2+
3+
3+
   711 4    D   0-,1-        
   724.67 4  B D   1+,2,3+      253.43 4 
   605.95 9 
   723.57 11 
   724.69 11 
 
 
 
 




   471.239
   118.719
     1.112
     0.0
(1,2,3)
3+
2-
1+
   725.807 22  B D   < 0.8 ns    228.92 3 
   301.06 4 
   344.60 5 
   386.90 6 
   488.75 7 
 
 
 
 
 





   496.886
   424.721
   381.207
   338.960
   237.069
(1,2,3+)
(1,2,3+)
1-,2-
0-,1-
(1,2,3+)
   748.598 22  B D   1-,2- < 0.8 ns    212.39 3 
   323.86 5 
   367.38 5 
   387.97 6 
   409.69 6 
   549.87 8 
   748.63 11 
 
 
 
 
 
 
 







   536.209
   424.721
   381.207
   360.618
   338.960
   198.689
     0.0
0-,1-
(1,2,3+)
1-,2-
1+,2+
0-,1-
2+
1+
   750.837 25  B D   (2)- < 0.12 ns    223.37 3 
   390.25 6 
   446.34 7 
   483.68 7 
   632.19 9 
   750.89 11 
 
 
 
 
 
 






   527.428
   360.618
   304.525
   267.229
   118.719
     0.0
(1+,2,3-)
1+,2+
1+,2+,3+
1+,2+
3+
1+
   753 3  BCD   1-,2-,3- < 0.25 ns    753 3 
 

     0.0
1+
   759.6 B     < 0.21 ns      
   767.01 4  B D   (1+,2,3+) < 1.3 ns    298.18 4 
   406.44 6 
   648.04 10 
   765.93 11 
 
 
 
 




   468.850
   360.618
   118.719
     1.112
(1+,2,3)
1+,2+
3+
2-
   773.697 23  BCD   (1+,2,3+) < 0.46 ns    237.49 4 
   276.80 4 
   348.98 5 
   469.14 7 
   536.72 8 
   574.98 8 
   654.99 10 
   773.67 11 
 
 
 
 
 
 
 
 








   536.209
   496.886
   424.721
   304.525
   237.069
   198.689
   118.719
     0.0
0-,1-
(1,2,3+)
(1,2,3+)
1+,2+,3+
(1,2,3+)
2+
3+
1+
   785.683 19  B     (1+,2,3+) < 0.5 ns    236.27 4 
   249.47 4 
   260.02 4 
   288.82 4 
   316.82 5 
   481.21 7 
   586.97 7 
   666.84 10 
   785.66 12 
 
 
 
 
 
 
 
 
 









   549.397
   536.209
   525.677
   496.886
   468.850
   304.525
   198.689
   118.719
     0.0
(1,2,3)
0-,1-
(1,2,3-)
(1,2,3+)
(1+,2,3)
1+,2+,3+
2+
3+
1+
   789.7 B     < 0.54 ns      
   793 3   CD   1,2,3+      793 3 
 

     0.0
1+
   802.73 4  B          277.07 4 
   611.04 9 
   683.98 10 
 
 
 



   525.677
   191.622
   118.719
(1,2,3-)
3+
3+
   811.419 24  B D   < 0.22 ns    275.23 4 
   325.64 5 
   342.62 5 
   450.78 7 
   506.83 7 
   544.20 8 
   612.71 9 
 
 
 
 
 
 
 







   536.209
   485.737
   468.850
   360.618
   304.525
   267.229
   198.689
0-,1-
(1+,2,3-)
(1+,2,3)
1+,2+
1+,2+,3+
1+,2+
2+
   819.017 22  B     < 0.72 ns    165.093 24 
   282.80 4 
   386.64 6 
   514.45 8 
   581.96 9 
   620.32 10 
 
 
 
 
 
 






   653.929
   536.209
   432.376
   304.525
   237.069
   198.689
(1+,2,3+)
0-,1-
(2)-
1+,2+,3+
(1,2,3+)
2+
   820 3  BC    < 1.1 ns    820 3 
 

     0.0
1+
   854.4 B     < 0.1 ns      
   864 4    D   1-,2-,3-        
   881.5 B     < 0.6 ns      
   890.7+X 3      F (10-)      406.3 2 
  100

   484.40+X
(9-)
   893 4    D          
   905 3   C           
   910.9 B     < 0.42 ns      
   918 3   CD        918 3 
 

     0.0
1+
   925 4    D          
   948 4    D   1-,2-,3-        
   953.2 B     < 2.0 ns      
   954.4 B     < 0.3 ns      
   985.7 B     < 0.7 ns      
   995.1 B D   (1-,2-,3-) < 0.4 ns      
  1013.0 B     < 0.84 ns      
  1026 4    D   (1-,2-,3-)        
  1104 3  BC    < 1.2 ns   1104 3 
 

     0.0
1+
  1111 4   CD   1,2,3+     1111 4 
 

     0.0
1+
  1167 3   CD   1,2,3+     1167 3 
 

     0.0
1+
  1188 4    D          
  1229.8+X 3      F (11-)      339.1 2 
   745.5 3 
  100 12 
   44 12 


   890.7+X
   484.40+X
(10-)
(9-)
  1230 4    D   1-,2-,3-        
  1263 4    D          
  1315 4    D   0-,1-        
  1343 4    D          
  1377 4    D          
  1402 4    D   1-,2-,3-        
  1480 4    D          
  1513 4    D          
  1535 4    D          
  1568 4    D          
  1659 4    D   1-,2-,3-        
  1707.2+X 4      F (12-)      477.4 2 
   816.4 4 
  100 24 
   18 6 


  1229.8+X
   890.7+X
(11-)
(10-)
  2198.1+X 4      F (13-)      490.8 3 
   968.4 5 
   86 29 
  100 29 


  1707.2+X
  1229.8+X
(12-)
(11-)
  2666.1+X 5      F (14-)      468.0 3 
   959 1 
  100 33 
   50 17 


  2198.1+X
  1707.2+X
(13-)
(12-)
  6809.20 10  B     0-,1-        
E(level): From least-squares fit to Eγ’s, unless otherwise stated
T1/2(level): From 109Ag(n,γ) E=thermal (1988Ko31), unless otherwise stated
M(γ): Deduced from α(K)exp and α(L1)exp in 109Ag(n,γ) (1968El03), or γ(θ) in 110Pd(p,nγ),109Ag(d,pγ) (1976Ha57), unless otherwise stated

Additional Gamma data:

E(level)
(keV)
E(γ)
(keV)
MultipolarityMixing
Ratio
Additional Data
     1.112     1.112 16 E1 B(E1)(W.u.)=0.00035 4, α=933 66
   117.59   116.48 5 M4 B(M4)(W.u.)=0.0165 10, α=164.9 17
   118.719   117.607 17 E1(+M2)+0.034 9B(E1)(W.u.)=(4.48E-6 8), B(M2)(W.u.)=(1.7 9), α=0.1032 22, α(K)=0.0897 19, α(L)=0.0110 3, α(M)=0.00208 6, α(N)=0.000353 9, α(O)=1.45E-5 4, α(N+)=0.000368 10
   191.622    72.903 11 M1 α=1.031
   191.2 5 (E2) α=0.1447 25, α(K)=0.1202 20, α(L)=0.0200 4, α(M)=0.00387 7, α(N)=0.000642 11, α(O)=1.92E-5 4, α(N+)=0.000661 12
   198.689   198.69 3 M1(+E2)+0.017 17B(M1)(W.u.)>0.033, α=0.0637, α(K)=0.0554 8, α(L)=0.00677 10, α(M)=0.001287 19, α(N)=0.000223 4, α(O)=1.040E-5 15, α(N+)=0.000233 4
   236.859   235.75 3 M1 B(M1)(W.u.)>0.0067, α=0.0405
   267.229    68.552 10 M1(+E2) α=3.4 22, α(K)=2.4 14, α(L)=0.8 7, α(M)=0.16 14, α(N)=0.025 21, α(O)=0.00035 16, α(N+)=0.026 21
   267.22 4 (M1) B(M1)(W.u.)>0.0019, α=0.0292, α(K)=0.0255 4, α(L)=0.00308 5, α(M)=0.000586 9, α(N)=0.0001015 15, α(O)=4.76E-6 7, α(N+)=0.0001062 15
   271.470    79.847 12 M1(+E2) α=2.0 13, α(K)=1.5 9, α(L)=0.4 4, α(M)=0.08 7, α(N)=0.013 11, α(O)=0.00023 10, α(N+)=0.013 11
   152.755 22 M1(+E2) α=0.22 10, α(K)=0.19 8, α(L)=0.031 18, α(M)=0.006 4, α(N)=0.0010 6, α(O)=3.1E-5 10, α(N+)=0.0010 6
   304.525   105.824 15 M1 B(M1)(W.u.)>0.085, α=0.358
   360.618    93.402 14 M1(+E2) α=1.2 7, α(K)=0.9 5, α(L)=0.22 16, α(M)=0.04 4, α(N)=0.007 5, α(O)=0.00014 6, α(N+)=0.007 5
   161.920 24 M1(+E2) α=0.19 8, α(K)=0.15 6, α(L)=0.025 14, α(M)=0.005 3, α(N)=0.0008 5, α(O)=2.6E-5 8, α(N+)=0.0008 5
   485.737   125.155 18 M1+E2 α=0.44 22, α(K)=0.35 16, α(L)=0.07 5, α(M)=0.013 9, α(N)=0.0021 14, α(O)=5.7E-5 21, α(N+)=0.0022 14

Additional Level data and comments:

E(level)Comments
     0.0Jπ(level): J=1 from atomic beam magnetic resonance technique (1969Cu09); π=+ from 110Ag β- Decay (1962Ka07) and μ.
T1/2(level): Weighted average of 24.7 s 7 (1970Va08), 24.93 s 22 (1967Yu01), 24.42 s 14 (1962Ma38), 24.2 s 12 (1957Se19), 24 s 2 (1954Bo39) and 24.5 s 3 (1946Hi06). Others: 22 s (2010Sc10), 24 s (1944Fl01), 23 s (1938Re04), 22 s (1938Po03) and 22 s (1935Am01).
     1.112E(level): From a least-squares fit to Eγ pairs that populate this level and g.s. in 109Ag(n,γ) E=thermal. ΔEγ are from 1975Cl03, but estimated by the evaluators if not reported reported in 1975Cl03. Others: 1.28 keV 10 (1970Ka05), 1.113 keV (1979Bo41) and 3.18 keV (1968El03).
Jπ(level): From L(d,p)=2; 1.112γ E1 to 1+.
T1/2(level): From ce-inner shell vacancy delayed coincidences (1975Cl03).
   117.59μ=+3.588 3
Jπ(level): From atomic-beam technique (1958Ew84); 116.48γ M4 to 2-.
T1/2(level): Weighted average of 249.950 d 24 (2002Un02), 249.790 d 16 (1983Wa26) 249.74 d 5 (1980Ho17), 249 d 3 (1962Ni01) and 252.5 d 15 (1957Ge07). Others: 270 d (1950Gu54) and 225 d 20 (1938Li07).
   118.719μ=3.79 6
Jπ(level): 117.607γ E1(+M2) to 2-; J=3 from γ(θ) and γ-ray excitation function (1976Ha57); π=+ from comparison of experimental and calculated g-factors (1974Be47).
T1/2(level): Weighted average of 36.7 ns 7 (from 117.607γ(t) pulsed-beam delayed coincidence method in 1976Ha57), 37 ns 5 (using pulsed-beam delayed coincidence method in 1974Be47), 36.5 ns 20, 37 ns 4, 37 ns 2 (using delayed coincidence technique in 1971Gu05, 1967Es03 and 1963Be51, respectively) and 33 ns 3 (1967WiZZ as quoted in 2000De11).
   191.622Jπ(level): 191.2γ (E2) to 1+; 72.903γ M1 to 3+.
   198.689Jπ(level): 198.69γ M1(+E2) to 1+.
   236.859Jπ(level): L(d,p)=0; 235.75γ M1 to 2-.
   237.069Jπ(level): 235.94γ to 2-; 237.05γ to 1+.
   242.09E(level): πg9/2νh11/2, α=0 band.
Jπ(level): 124.5γ to 6+; band assignment (2002Po11).
   242.09+XE(level): πg9/2νh11/2, α=1 band.
Jπ(level): Assigned as band head in 2002Po11.
   267.229Jπ(level): 68.552γ M1(+E2) to 2+; 267.22γ (M1) to 1+.
   269E(level): From 109Ag(d,p).
Jπ(level): L(d,p)=2.
   271.470Jπ(level): 79.847γ to 3+; 152.755γ M1(+E2) to 3+.
   293.3+XE(level): πg9/2νh11/2, α=0 band.
Jπ(level): 51.2γ to (7-); band member.
   302.1Jπ(level): 110.5γ to 3+; 302.0γ to 1+.
   304.525Jπ(level): 105.824γ M1 to 2+; 304.538γ to 1+.
   338.960XREF: d(337).
E(level):
Jπ(level): L(d,p)=0; 337.80γ to 2-; 338.92γ to 1+.
   360.618Jπ(level): 93.402γ M1(+E2) to 1+,2+; 161.920γ M1(+E2) to 2+; 123.766γ to 1-.
   381.207XREF: C(380)d(378).
E(level):
Jπ(level): L(d,p)=2; 381.20γ to 1+.
   411.973Jπ(level): 293.26γ to 3+; 411.96γ to 1+.
   424.721XREF: C(427).
E(level):
Jπ(level): 424.71γ to 1+; 423.60γ to 2-. In 110Pd(p,nγ), 109Ag(d,pγ) a 231.7γ is observed, so that this level can be a close-lying doublet.
   432.376Jπ(level): L(d,p)=0+2; 240.76γ to 3+; 431.38γ to 2-.
   456.53Jπ(level): 337.80γ to 3+.
   466.885Jπ(level): 275.23γ to 3+.
   468.850Jπ(level): 270.15γ to 2+; 350.12γ to 3+.
   471.239Jπ(level): 272.54γ to 2+.
   484E(level): From 109Ag(d,p).
Jπ(level): L(d,p)=0.
   484.40+XE(level): πg9/2νh11/2, α=1 band.
Jπ(level): 191.1γ to (8-); band member.
   485.737Jπ(level): 367.05γ to 3+; 248.91γ to 1-.
   496.886XREF: d(494).
E(level):
Jπ(level): 298.18γ to 2+; 495.76γ to 2-; 496.87γ to 1+.
   525.677Jπ(level): 186.76γ to 0-,1-; 326.97γ to 2+; 524.54γ to 2-.
   527.428Jπ(level): 188.17γ to 0-,1-; 328.80γ to 2+; 335.91γ to 3+; 526.39γ to 2-.
   536.209Jπ(level): L(d,p)=0.
   549.397Jπ(level): 312.53γ to 1-; 549.38γ to 1+.
   592.9Jπ(level): L(d,p)=2.
   595.05XREF: C(597).
E(level):
Jπ(level): L(d,p)=2; 595.07γ to 1+; 593.91γ to 2-.
   615.137Jπ(level): 378.08γ to 1-; 614.04γ to 2-.
   653.929Jπ(level): 462.29γ to 3+; 652.76γ to 2-.
   663.463Jπ(level): L(d,p)=2; 464.78γ to 2+; 662.27γ to 2-.
   664.935Jπ(level): L(d,p)=2; 663.75γ to 2-; 466.22γ to 2-.
   683.152Jπ(level): 484.45γ to 2+.
   689.47Jπ(level): 422.23γ to 1+,2+; 570.76γ to 3+.
   706.214Jπ(level): 507.41γ to 2+; 514.45γ to 3+.
   711E(level): From 109Ag(d,p).
Jπ(level): L(d,p)=0.
   724.67Jπ(level): 605.95γ to 3+; 723.57γ to 2-; 724.69γ to 1+.
   748.598Jπ(level): L(d,p)=2; 549.87γ to 2+; 748.63γ to 1+.
   750.837Jπ(level): L(d,p)=2; 632.19γ to 3+; 750.89γ to 1+.
   753Jπ(level): L(d,p)=2.
   767.01Jπ(level): L(d,p)=2; 648.04γ to 3+; 765.93γ to 2-.
   773.697XREF: C(771).
E(level):
Jπ(level): L(d,p)=2; 574.98γ to 2+; 654.99γ to 3+; 773.67γ to 1+.
   785.683Jπ(level): 586.97γ to 2+; 666.84γ to 3+; 785.66γ to 1+.
   793Jπ(level): L(d,p)=2; 793γ to 1+.
   864E(level): From 109Ag(d,p).
Jπ(level): L(d,p)=2.
   890.7+XE(level): πg9/2νh11/2, α=0 band.
Jπ(level): 406.3γ to (9-); band member.
   893E(level): From 109Ag(d,p).
   918XREF: d(925).
E(level):
   925E(level): From 109Ag(d,p).
   948E(level): From 109Ag(d,p).
Jπ(level): L(d,p)=2.
   995.1XREF: d(993).
E(level):
Jπ(level): L(d,p)=(2).
  1026E(level): From 109Ag(d,p).
Jπ(level): L(d,p)=(2).
  1104XREF: B(1107).
E(level):
  1111Jπ(level): L(d,p)=2; 1111γ to 1+.
  1167XREF: d(1165).
E(level):
Jπ(level): L(d,p)=2; 1167γ to 1+.
  1188E(level): From 109Ag(d,p).
  1229.8+XE(level): πg9/2νh11/2, α=1 band.
Jπ(level): 339.1γ to (10-); 745.5γ to (9-); band member.
  1230E(level): From 109Ag(d,p).
Jπ(level): L(d,p)=2.
  1263E(level): From 109Ag(d,p).
  1315E(level): From 109Ag(d,p).
Jπ(level): L(d,p)=0.
  1343E(level): From 109Ag(d,p).
  1377E(level): From 109Ag(d,p).
  1402E(level): From 109Ag(d,p).
Jπ(level): L(d,p)=2.
  1480E(level): From 109Ag(d,p).
  1513E(level): From 109Ag(d,p).
  1535E(level): From 109Ag(d,p).
  1568E(level): From 109Ag(d,p).
  1659E(level): From 109Ag(d,p).
Jπ(level): L(d,p)=2.
  1707.2+XE(level): πg9/2νh11/2, α=0 band.
Jπ(level): 477.4γ to (11-); 816.4γ to (10-); band member.
  2198.1+XE(level): πg9/2νh11/2, α=1 band.
Jπ(level): 490.8γ to (12-); 968.4γ to (11-); band member.
  2666.1+XE(level): πg9/2νh11/2, α=0 band.
  6809.20E(level): From neutron separation energy (2003Au03). Other: 6810 keV 1 (1967Bo06).
Jπ(level): From s-wave capture by 109Ag g.s (Jπ=1/2-).

Additional Gamma comments:

E(level)E(gamma)Comments
     1.112     1.112E(γ): From energy level differences
M(γ): From M1/M2/M3=0.3 1/1.0/2.1 4, N1/N2/N3=0.25 10/1.00/2.0 6 1993Ka37). Theoretical α ratios for E1 transition (calculated by t. Kibedi with the RAINE code using the same atomic and nuclear parameters as BRICC by t. Kibedi): M1/M2/M3=0.3/1.0/2.2, N1/N2/N3=0.43/1.00/2.11
   117.59   116.48E(γ): From 110Ag IT decay (249.83 d) (1990Me15)
M(γ): From conversion electron intensity ratios, K/L=2.04 6, L1/L2=4.8 5, L1/L3=1.02 2 (1965Ge01). Other: K/L=2.1 2 (1963Su07), K/L=1.95 10 (1965Ha07)
   118.719   117.607M(γ): A2=-0.142 5, A4=+0.019 8 (for E(p)=3.5 MeV), A2=-0.149 16, A4=+0.019 8 (for E(p)=3.0 MeV) (1976Ha57); α(K)exp=0.088, α(L1)exp=0.0073 (1968El03)
   191.622    72.903M(γ): α(K)exp=0.86 17, α(L1)exp=0.11 7 (1968El03)
   191.2M(γ): From A2=+0.235 13, A4=-0.030 22 (1976Ha57). Authors of 1976Ha57 assign this transition as Q(O), based on the measured δ=+0.034 61
   198.689   198.69M(γ): A2=-0.084 4, A4=+0.014 6 (1976Ha57) and from α(K)exp=0.048 3, α(L1)exp=0.0055 8 (1968El03)
   236.859   235.75M(γ): α(K)exp=0.027 1, α(L1)exp=0.0016 7 (1968El03) (includes L236.62γ)
   242.09   124.5E(γ): From 176Yb(28Si,Xγ)
I(γ): From 176Yb(28Si,Xγ)
   267.229    68.552M(γ): α(K)exp=1.04 21, α(L1)exp=0.23 19 (1968El03)
   267.22M(γ): A2=+0.013 9, A4=+0.026 16 (1976Ha57), coefficient of summed angular distribution for 265.7γ and 267.0γ and from α(K)exp=0.017 1 (1968El03)
   271.470    79.847M(γ): α(K)exp=0.82 16, α(L1)exp=0.08 3 (1968El03)
   152.755M(γ): α(K)exp=0.15 2 (1968El03)
   293.3+X    51.2E(γ): From 176Yb(28Si,Xγ)
I(γ): From 176Yb(28Si,Xγ)
   302.1   110.5E(γ): From 110Pd(p,nγ), 109Ag(d,pγ)
   302.0E(γ): From 110Pd(p,nγ), 109Ag(d,pγ)
   304.525   105.824M(γ): α(K)exp=0.25 4, α(L1)exp=0.037 7 (1968El03)
   360.618    93.402M(γ): α(K)exp=0.50 10, α(L1)exp=0.078 24 (1968El03)
   161.920M(γ): α(K)exp=0.12 4 (1968El03)
   424.721   157.488E(γ): Multiply placed
   484.40+X   191.1E(γ): From 176Yb(28Si,Xγ)
I(γ): From 176Yb(28Si,Xγ)
   485.737   125.155M(γ): α(K)exp=0.29 4 (1968El03)
   496.886   260.02E(γ): Multiply placed
   298.18E(γ): Multiply placed
   525.677   288.82E(γ): Multiply placed
   540   540E(γ): From 109Ag(n,γ) E=5.2 eV res
   586.8   586.8E(γ): From 110Pd(p,nγ), 109Ag(d,pγ)
   683.152   157.488E(γ): Multiply placed
   706.214   514.45E(γ): Multiply placed
   753   753E(γ): From 109Ag(n,γ) E=5.2 eV res
   767.01   298.18E(γ): Multiply placed
   785.683   260.02E(γ): Multiply placed
   288.82E(γ): Multiply placed
   793   793E(γ): From 109Ag(n,γ) E=5.2 eV res
   819.017   514.45E(γ): Multiply placed
   820   820E(γ): From 109Ag(n,γ) E=5.2 eV res
   890.7+X   406.3E(γ): From 176Yb(28Si,Xγ)
I(γ): From 176Yb(28Si,Xγ)
   918   918E(γ): From 109Ag(n,γ) E=5.2 eV res
  1104  1104E(γ): From 109Ag(n,γ) E=5.2 eV res
  1111  1111E(γ): From 109Ag(n,γ) E=5.2 eV res
  1167  1167E(γ): From 109Ag(n,γ) E=5.2 eV res
  1229.8+X   339.1E(γ): From 176Yb(28Si,Xγ)
I(γ): From 176Yb(28Si,Xγ)
   745.5E(γ): From 176Yb(28Si,Xγ)
I(γ): From 176Yb(28Si,Xγ)
  1707.2+X   477.4E(γ): From 176Yb(28Si,Xγ)
I(γ): From 176Yb(28Si,Xγ)
   816.4E(γ): From 176Yb(28Si,Xγ)
I(γ): From 176Yb(28Si,Xγ)
  2198.1+X   490.8E(γ): From 176Yb(28Si,Xγ)
I(γ): From 176Yb(28Si,Xγ)
   968.4E(γ): From 176Yb(28Si,Xγ)
I(γ): From 176Yb(28Si,Xγ)
  2666.1+X   468.0E(γ): From 176Yb(28Si,Xγ)
I(γ): From 176Yb(28Si,Xγ)
   959E(γ): From 176Yb(28Si,Xγ)
I(γ): From 176Yb(28Si,Xγ)