Лекции по основам кинематики элементарных процессов. Строковский Е.А. - 160 стр.

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n +
nT
nT
σ =
'
PhaseVolume
| <f|T |nT > |
2
InvFlux(nT )
.
InvFlux(nT )
nT
nT
!
PhaseVolume
| <f|T |nT > |
2
=
= σ
inel
(nT ) × InvFlux(n
transf
T ) .
       9 5 FC 9G .     
0 1  56     7    ” 1  / 11 ”0
C 11      /   2       
 / 1   /0   9   22    5 
       / / F /G
   8    0           
9        9 5 Fn + wq_xbcG0  0 
6 0 FnT G0  1  5  1   71    F2  1
   C     1 2   
1        2  1    9 
   1  G0 C        1 
    FnT G   1  F*""G      F*EG0
1       6   
                         '
                                        | < f |T |nT > |2
       σ=              P haseV olume
                              InvF lux(nT )
                                                          .             F"! ,G
    7             0  
  C   9          
           0  7     C  
    1      / 71    / /
. 7     1  InvF lux(nT )      C
     F" " " < 6G
               1      
  6 2 0  C  /      1 /
  F. 0 1 1   /   2   0
  0 1    2 1 0 2 C    
/ 6    1 / 0    1 1 2   G
.7 0 0 %'0   FnT G 9  1  5  
  1    5 FnT G  ?   2    5 
   122   F1      G 0  %'0 7 
  9       C 0    
  2   2    1 0   1   
  1   0      2 C 20 C 1 
     F"! ,G0       1    
F  " " < 6G?
                             !
                                                  | < f |T |nT > |2 =
                               P haseV olume

                      = σinel (nT ) × InvF lux(ntransf T ) .            F"! *G

                                        "E!