29-Cu-67



Spin
     Level energy(keV)   Spin & Parity       
     ----------------------------------------
       ground state      3/2-                  
Mass (The Ame2012 atomic mass evaluation (II) by M.Wang, G.Audi, A.H.Wapstra, F.G.Kondev, M.MacCormick, X.Xu, and B.Pfeiffer Chinese Physics C36 p. 1603-2014, December 2012)
     66.927730314 ± 0.000001300 (amu)  [mass excess = -67318.779 ± 1.211 (keV) ]
Beta-decay energy (calculated as M(A,Z)-M(A,Z+1), taken from Ame2012)
     561.288 ± 1.505 (keV) 
Strong Gamma-rays from Decay of Cu- 67 (Compiled from ENSDF as of March 2011)
  [ Intensities before May 23th of 2013 were values when total intensity of the decay mode was 100(%) and a branching ratio of each decay mode was not multiplied. ]
   γ-ray energy(keV)  Intensity(%)  Decay mode 
  ----------------------------------------------------------
         91.27            7.           B- 
         93.31           16.1          B- 
        184.58           48.7          B- 
  ----------------------------------------------------------
         99.9            71.           IT 
        860.9           100.           IT 
       2502.6            48.           IT 
  ----------------------------------------------------------
     *: relative, ~ approximate, ? calculated or estimatted 
     >: greater than or equal to, <: less than or equal to  
  [ Intensities; total intensity of the nuclide is 100(%). ]
Decay data(Chart of the Nuclides 2014)
     Decay mode     Half-life 
       B-           61.83 H 12       
Evaluated Data Libraries
     Links to the libraries. 

Parent Nuclides by Reactions in JENDL-4.0
     Zn- 67 (Z= 30, A= 67), MT=103 (n,p)
     Zn- 68 (Z= 30, A= 68), MT= 28 (n,np)
     Zn- 68 (Z= 30, A= 68), MT=104 (n,d)
     Ga- 69 (Z= 31, A= 69), MT=106 (n,3He)
     Ga- 71 (Z= 31, A= 71), MT= 22 (n,nα)

Fission Yields for Fission Products in JENDL-4.0 Fission Yield Data

   - Neutron-induced Fission Yields (from main actinide nuclides) - Independent Fission Yield -
     Product  Nuclide  Energy   Fission Yield  Uncertainty(1σ)
    -----------------------------------------------------------
     Cu- 67    U-235   Thermal   9.664610e-12   6.185350e-12 
     Cu- 67    U-235   Fast      5.069540e-11   3.244500e-11 
     Cu- 67    U-235   High      7.239920e-08   4.633560e-08 
     Cu- 67    U-238   Fast      1.580590e-10   1.011580e-10 
     Cu- 67    U-238   High      1.171270e-08   7.496160e-09 
     Cu- 67   Pu-239   Thermal   1.559750e-10   9.982430e-11 
     Cu- 67   Pu-239   Fast      4.789230e-10   3.065110e-10 
     Cu- 67   Pu-239   High      3.332160e-08   2.132580e-08 
     Cu- 67   Pu-241   Thermal   1.100180e-10   7.041130e-11 
     Cu- 67   Pu-241   Fast      6.954770e-11   4.451050e-11 
    -----------------------------------------------------------
    Thermal=0.0253eV, Fast=500keV(Fast reactor spectrum), High=14MeV
   - Neutron-induced Fission Yields (from main actinide nuclides) - Cumulative Fission Yield -
     Product  Nuclide  Energy   Fission Yield  Uncertainty(1σ)
    -----------------------------------------------------------
     Cu- 67    U-235   Thermal   3.600330e-09   1.155160e-09 
     Cu- 67    U-235   Fast      2.322600e-08   7.423990e-09 
     Cu- 67    U-235   High      6.040530e-06   6.643260e-07 
     Cu- 67    U-238   Fast      2.144150e-07   6.880290e-08 
     Cu- 67    U-238   High      1.388210e-06   3.197060e-07 
     Cu- 67   Pu-239   Thermal   4.488050e-09   2.016000e-09 
     Cu- 67   Pu-239   Fast      2.862020e-08   9.184180e-09 
     Cu- 67   Pu-239   High      9.833500e-07   3.142430e-07 
     Cu- 67   Pu-241   Thermal   5.047720e-09   1.616000e-09 
     Cu- 67   Pu-241   Fast      1.313030e-08   5.895080e-09 
    -----------------------------------------------------------
    Thermal=0.0253eV, Fast=500keV(Fast reactor spectrum), High=14MeV
      → Neutron-induced and Spontaneous Fission Yields of all nuclides in JENDL-4.0 Fission Yield Data