Difference between revisions of "4-vectors"
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Where
Where
is the Lorentz transformation matrix for motion in the z direction.
Line 60: | Line 60: | ||
\gamma (x^3-vx^0) | \gamma (x^3-vx^0) | ||
\end{bmatrix}</math></center> | \end{bmatrix}</math></center> | ||
+ | |||
+ | |||
<center>Where <math>\beta \equiv \frac{v}{c}</math></center> | <center>Where <math>\beta \equiv \frac{v}{c}</math></center> |
Revision as of 01:57, 6 June 2017
4-vectors
Using index notation, the time and space coordinates can be combined into a single "4-vector"
, that has units of length, i.e. ct is a distance.
Using the Lorentz transformations and the index notation,
This can be expressed in matrix form as
Letting the indices run from 0 to 3, we can write
We can express the space time interval using the index notation