Nucleus[1] Binding energy (MeV) g.s. Radius[3] & Deformation[4]
11449In65   Indium
J(π)=1+
T1/2=1.20 m
  Experiment
[2]
Theory
[4]
Sh.corr.
[4]
Mass Excess -88.568397
(0.000875)
-88.650 1.800
BE 970.364 970.445
BE/A 8.512 8.513
<R2ch>1/2 = 4.6056 ± 0.0029 fm [3]
Charge-density Distribution [6]

β2= 0.086
β3= 0.000
β4= -0.022
β6= 0.008
Excited States[1]
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Known and possible Decays[1] Q-values (keV)
roman [2], italic [4]
α - decay-3535.54
β- - decay1988.97
β+ - decay424.41
e-capture1446.41
1p - decay-6814.15
2p - decay-16562.68
1n - decay-7273.88
2n - decay-16719.93
- - decay-4072.68
β-,n-8311.42
β-,2n-16054.97
β-,d-13712.99
β-,t-15127.26
β--644.50
β-,n,α-10560.20
EC,p-8830.64
EC,2p-16824.60
EC,α-2661.81
Metastable states and Resonances[1] Radiation energies (keV)[1] Thermal neutrons[1] El.-Magn. properties[5,7,8]
 
E = 190.2682 keV
T1/2 = 49.51 d
IT
96.75%
β+, EC
3.25%
E = 501.948 keV
T1/2 = 43.10 ms
IT
100%
β- endpoint energies
β+ endpoint energies
γ-energies
 
μ (nm) Q (b) E* (keV)
+4.72(10)190
4.66(3)190
4.658(7)190
+4.653(5)190
2.817(11)0
+0.703(11)190
  
[1] National Nuclear Data Center, Evaluated Nuclear Structure Data File, https://www.nndc.bnl.gov/ensdf/.
[2] M. Wang, G. Audi, A.H. Wapstra, F.G. Kondev, M. MacCormick, X. Xu, and B. Pfeiffer, Chinese Physics C, 2012, vol. 36, pp. 1603-2014.
[3] I. Angeli, K.P. Marinova, Atomic Data and Nuclear Data Tables, 2013, vol. 99, pp. 69-95; unpublished update, 2016.
[4] P. Möller, A.J. Sierk, T. Ichikawa, H. Sagawa, Atomic Data and Nuclear Data Tables, 2016, vol. 109-110, pp. 1-204.
[5] N.J. Stone, https://www-nds.iaea.org/publications/indc/indc-nds-0658/; Atomic Data and Nuclear Data Tables, 2016, vol. 111-112, pp. 1–28.
[6] H. de Vries, C.W. de Jager, C. de Vries, Atomic Data and Nuclear Data Tables, 1987, vol. 36, pp. 495-536.
[7] B. Pritychenko, M. Birch, B. Singh, M. Horoi, Atomic Data and Nuclear Data Tables, 2016, vol. 107, pp. 1–139; 2017, vol. 114, pp. 371–374.
[8] T. Kibedi and R.H. Spear, Atomic Data and Nuclear Data Tables, 2002, vol. 80, pp. 35-82.