Fireball Production from a Tesla Coil: Difference between revisions
Appearance
Imported from text file |
infobox: unlink bare volume/issue numbers (removes redlinks to numeric titles) |
||
| (One intermediate revision by one other user not shown) | |||
| Line 5: | Line 5: | ||
| published = 2003 | | published = 2003 | ||
| journal = [[Electric Spacecraft Journal]] | | journal = [[Electric Spacecraft Journal]] | ||
| number = | | number = 36 | ||
| pages = 20-22 | | pages = 20-22 | ||
}} | }} | ||
| Line 15: | Line 15: | ||
[[Category:Scientific Paper|fireball production tesla coil]] | [[Category:Scientific Paper|fireball production tesla coil]] | ||
[[Category:Tesla]] | [[Category:Tesla|fireball production tesla coil]] | ||
Latest revision as of 09:33, 21 July 2026
| Scientific Paper | |
|---|---|
| Title | Fireball Production from a Tesla Coil |
| Author(s) | James F Corum, Kenneth L Corum |
| Keywords | do-it-yourself, fireballs, replication, Tesla, Tesla coils |
| Published | 2003 |
| Journal | Electric Spacecraft Journal |
| Number | 36 |
| Pages | 20-22 |
Abstract
James and Kenneth Corum searched the historical record for clues as to how Tesla was able to generate fireballs on-demand. They discovered that operating two, different-frequency coils placed inside the primary made this possible. They also found that airborne carbon or metal particulates enhanced the effect.