scholarly journals Chemical Effects Associated with β-Decay Process. I. The Chemical Behavior of a Decayed Product,144Pr, in the EDTA Complex System

1965 ◽  
Vol 38 (8) ◽  
pp. 1340-1343 ◽  
Author(s):  
Takanobu Shiokawa ◽  
Hiroshi Kudo ◽  
Takashi Omori
2009 ◽  
Vol 18 (08) ◽  
pp. 1205-1226 ◽  
Author(s):  
C. C. MOUSTAKIDIS

We provide an equation of state for high density supernova matter by applying a momentum-dependent effective interaction. We focus on the study of the equation of state of high density and high temperature nuclear matter containing leptons (electrons and neutrinos) under the chemical equilibrium condition. The conditions of charge neutrality and equilibrium under the β-decay process lead first to the evaluation of the lepton fractions and afterward to the evaluation of internal energy, pressure, entropy and, in total to the equation of state of hot nuclear matter for various isothermal cases. Thermal effects on the properties and equation of state of nuclear matter are evaluated and analyzed in the framework of the proposed effective interaction model. Since supernova matter is characterized by a constant entropy, we also present the thermodynamic properties for the isentropic case. Special attention is devoted to the study of the contribution of the components of β-stable nuclear matter to the entropy per particle, a quantity of great interest for the study of structure and collapse of supernovas.


1988 ◽  
Vol 125 (2) ◽  
pp. 473-480 ◽  
Author(s):  
A. M. Nicolás ◽  
A. Trifone ◽  
S. J. Nassiff
Keyword(s):  
Β Decay ◽  

1961 ◽  
Vol 21 (3-4) ◽  
pp. 205-209 ◽  
Author(s):  
C. Cummiskey ◽  
S.M. Hamill ◽  
W.H. Hamill ◽  
R.R. Williams
Keyword(s):  
Β Decay ◽  

2020 ◽  
Vol 193 ◽  
pp. 02014
Author(s):  
Sergey Strekalov ◽  
Mariya Frolova

The article presents the pole model of radiocarbon decay process. When using this model it is assumed that there is a pair bond in the form of an individual pole axis between proton and electron. This bond can change the tilt angle relative to the generalized axis, with increasing energy. Increase of the tilt angle of the pole axis is accompanied by increase of its energy, this process is interrelated with energy state of the paired electron. With increasing energy of the paired bond the energy of the electron decreases and it occupies the energy level located closer to the nucleus. At critical increase of energy of the pole axis it will deflect to the maximum angle, the electron takes the position located in the maximum proximity to the nucleus, which leads to the connection with the paired proton and formation of the neutron. The analysis of the decay process illustration is carried out. This article describes the β-decay process using pole models.


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