Difference between revisions of "Electron Center of Mass Frame"

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=4.1.3.3  Electron Center of Mass Frame=
  
 
Relativistically, the x, y, and z components have the same magnitude, but opposite direction, in the conversion from the Moller electron's Center of Mass frame to the electron's Center of Mass frame.
 
Relativistically, the x, y, and z components have the same magnitude, but opposite direction, in the conversion from the Moller electron's Center of Mass frame to the electron's Center of Mass frame.
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----
  
  
 
<center><math>\textbf{\underline{Navigation}}</math>
 
<center><math>\textbf{\underline{Navigation}}</math>
  
[[VanWasshenova_Thesis#Determining_wire-theta_correspondence|<math>\vartriangleleft </math>]]
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[[Phi_Dependent_Components|<math>\vartriangleleft </math>]]
[[VanWasshenova_Thesis#Determining_wire-theta_correspondence|<math>\triangle </math>]]
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[[VanWasshenova_Thesis#Weighted_Isotropic_Distribution_in_Lab_Frame|<math>\triangle </math>]]
[[CED_Verification_of_DC_Angle_Theta_and_Wire_Correspondance|<math>\vartriangleright </math>]]
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[[Lorentz_Transformation_to_Lab_Frame|<math>\vartriangleright </math>]]
  
 
</center>
 
</center>

Latest revision as of 15:00, 30 May 2017

[math]\textbf{\underline{Navigation}}[/math]

[math]\vartriangleleft [/math] [math]\triangle [/math] [math]\vartriangleright [/math]



4.1.3.3 Electron Center of Mass Frame

Relativistically, the x, y, and z components have the same magnitude, but opposite direction, in the conversion from the Moller electron's Center of Mass frame to the electron's Center of Mass frame.


[math]p^*_{2(x)}= -p^*_{1(x)}[/math]


[math]p^*_{2(y)}= -p^*_{1(y)}[/math]


[math]p^*_{2(z)}=-p^*_{1(z)}[/math]

where previously it was shown

[math]|p^*_{1}|\equiv |p^*_{2}|[/math]



[math]E^*_{1}\equiv E^*_{2}[/math]



[math]\theta_{1}^*=\pi-\theta_{1}^*[/math]





[math]\textbf{\underline{Navigation}}[/math]

[math]\vartriangleleft [/math] [math]\triangle [/math] [math]\vartriangleright [/math]