Breaking the Dirac Code: Difference between revisions
Appearance
Remove empty None journal/publisher placeholder (dead red-link cleanup) |
fix apostrophes lost to the character-encoding bug (Einstein?s -> Einstein's); URLs left untouched |
||
| Line 9: | Line 9: | ||
==Abstract== | ==Abstract== | ||
In describing the fermionic state, the Dirac equation is the most fundamental in physics. The full power of the equation, however, seems to be obscured by a complicated mathematical apparatus which prevents us gaining a more direct knowledge of the fermionic state. To get beyond this hurdle means breaking the equation | In describing the fermionic state, the Dirac equation is the most fundamental in physics. The full power of the equation, however, seems to be obscured by a complicated mathematical apparatus which prevents us gaining a more direct knowledge of the fermionic state. To get beyond this hurdle means breaking the equation's mathematical code. The reward for doing this is a new set of insights into particle physics and quantum mechanics. | ||
</span> | </span> | ||
Latest revision as of 09:02, 22 July 2026
| Scientific Paper | |
|---|---|
| Title | Breaking the Dirac Code |
| Author(s) | Peter Rowlands |
| Keywords | Dirac |
| Published | 2006 |
| No. of pages | 19 |
Abstract
In describing the fermionic state, the Dirac equation is the most fundamental in physics. The full power of the equation, however, seems to be obscured by a complicated mathematical apparatus which prevents us gaining a more direct knowledge of the fermionic state. To get beyond this hurdle means breaking the equation's mathematical code. The reward for doing this is a new set of insights into particle physics and quantum mechanics.