"Special relativity"의 두 판 사이의 차이

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<h5>four-vector </h5>
 
<h5>four-vector </h5>
  
* can be transformed by Lorentz transoformation
+
* can be transformed by Lorentz transformation
 
*  examples<br>
 
*  examples<br>
 
** space-time (ct,x,y,z)
 
** space-time (ct,x,y,z)
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<h5 style="line-height: 3.428em; margin: 0px; color: rgb(34, 61, 103); font-family: 'malgun gothic',dotum,gulim,sans-serif; font-size: 1.166em; background-position: 0px 100%;">related items</h5>
 
<h5 style="line-height: 3.428em; margin: 0px; color: rgb(34, 61, 103); font-family: 'malgun gothic',dotum,gulim,sans-serif; font-size: 1.166em; background-position: 0px 100%;">related items</h5>
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* [http://pythagoras0.springnote.com/pages/1951508 미분기하학]<br>
  
 
 
 
 

2010년 10월 11일 (월) 09:35 판

four-vector 
  • can be transformed by Lorentz transformation
  • examples
    • space-time (ct,x,y,z)
    • electromagnetic field
  •  

 

 

review of Maxwell's equation

 

 

Lorentz transformation and Maxwell's equation

 

 

 

Vacuum field equation and gravitational field equation
  • gravitational potentail satisfies the following equation
    \(\nabla^2 \Phi = - 4 \pi G \rho\)

 

 

energy-momentum tensor
  • describe the densities and flows of energy and momentum

 

 

 

relativistic Vacuum field equation

 

 

 

relativistic matter field equation
  • Einstein field equation
    \(R_{\mu \nu} - {1 \over 2}g_{\mu \nu}\,R + g_{\mu \nu} \Lambda = {8 \pi G \over c^4} T_{\mu \nu}\)
    where \(\Lambda\) is the cosmological constant

 

 

history

 

 

related items

 

 

encyclopedia

 

 

books

[[4909919|]]

 

 

articles

 

 

question and answers(Math Overflow)

 

 

blogs and webpage

 

 

links