Proceedings of the International School of Physics "Enrico Fermi.", Volume 11N. Zanichelli, 1960 - Nuclear physics |
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Page 226
Il pis The linking factor ( 61 ) , by the restricting triangle conditions imposed on the
quantum numbers for the non - vanishing of W and X symbols , embodies , for 1 -
- 1 ' = 1 , 1 = } , the well - known selection rules for allowed transitions : J , - J ...
Il pis The linking factor ( 61 ) , by the restricting triangle conditions imposed on the
quantum numbers for the non - vanishing of W and X symbols , embodies , for 1 -
- 1 ' = 1 , 1 = } , the well - known selection rules for allowed transitions : J , - J ...
Page 236
In J J transitions , on the other hand , both types of interaction will in general
contribute both « pure » » ( r = . 7 ' ' ) and « cross » ( r + p ' ) terms to that emission
factor ; the only exception is the ( ) → transition , which , as shown by the above ...
In J J transitions , on the other hand , both types of interaction will in general
contribute both « pure » » ( r = . 7 ' ' ) and « cross » ( r + p ' ) terms to that emission
factor ; the only exception is the ( ) → transition , which , as shown by the above ...
Page 377
the corresponding transition probability : ( 5 ) 15 Of 12 , 221 P , - 2 . 7 ( 29 ) 3 ( 1 +
v / m , ) 2 94 + Qv ! ? ( 1 - - cos 0 ) 19 ( 0 ) 2 = 11 m . , j aldo , ( 1 - cos 9 ) 29 " ( 137
) " " 1 + v / m 22 19 where m ' , is the reduced mass of the top system . Similarly ...
the corresponding transition probability : ( 5 ) 15 Of 12 , 221 P , - 2 . 7 ( 29 ) 3 ( 1 +
v / m , ) 2 94 + Qv ! ? ( 1 - - cos 0 ) 19 ( 0 ) 2 = 11 m . , j aldo , ( 1 - cos 9 ) 29 " ( 137
) " " 1 + v / m 22 19 where m ' , is the reduced mass of the top system . Similarly ...
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Contents
GENERALITĄ | 1 |
PARTE PRIMA Problemi teorici | 9 |
PARTE SECONDA Correlazioni angolari polarizzazioni e decadimenti beta | 197 |
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allowed angle angular assumed calculated charge classical combination completely component connection conservation consider constant contribute correlation corresponding coupling curvature decay defined density dependence derived described determination direction discussed effects electric electromagnetic field electron element elementary emission energy equations example existence experiment experimental expression factor Fermi field final finds formula function geometrodynamics geometry give given gravitational histories initial interaction invariance known leads limit magnetic mass matrix means measured metric modes momentum neutrino neutron nuclei nucleons observed obtained operators pairs parity particle phase Phys physics polarization possible present principle problem properties purely quantity quantum quantum mechanics question radiation ratio reason reference relation relativity requires respect result scattering shown shows solution space spin symmetry Table theory transformation transitions universe vector wave weak zero