Лекции по основам кинематики элементарных процессов. Строковский Е.А. - 167 стр.

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ε
+1
M
M = f · [E
1
(p
2
p
3
)+E
2
(p
3
p
1
)+E
3
(p
1
p
2
)] .
M = f · [p
1
(M 3E
2
) p
2
(M 3E
1
)] ,
E
1
= E
2
= E
3
=
M/3
p
1
= p
2
p
2
= p
3
p
1
= p
3
p
1
= p
2
p
2
= p
3
p
1
= p
3
2       ε 1     F"!"+G
   C      56 ? F"G     / /
  0   1  2 2     
1         O    2    
   5 7   F 1  6 G I  0  2
 2   1       6   
      2   F G  1      
  2     2   FAG  2 2
   1        50     N
   C F  6   F"",GG   0   1     
  6     2 2     """
  7  2    

 %41%/ 143/,32,+,8, :,% % 2+ 1D
       ,%
 7    1          "0 
    2   +1
      F"""G  1   2 /     
  M0   7    C      HC 
1   C 0  1  6/  /0 C 1   
    0     7   0    1 1   
  1   0  C    

                                                           F""*G
    M = f · [E1 (p2 − p3 ) + E2 (p3 − p1 ) + E3 (p1 − p2 )] .

   .    /  7 2  1 0 7 
 C  C 1     
             M = f · [p1 (M − 3E2 ) − p2 (M − 3E1 )] ,    F"""!G
     0      2   1    
   6    F   7   E1 = E2 = E3 =
M/3G $ 20  F""*G  0    2 2  
 /0 2 p1 = p2 0   p2 = p3 0   p1 = p3 1    
   C 6    F        7 
  G @  / /0 2 p1 = −p2 0   p2 = −p3 0   p1 = −p3 0
1         F  "!-   """G

                                 "E+