The Use of Finite Differences on Electric Currents Gives Credit to Coulomb's Law as Causing Electromagnetic Forces, thereby Explaining Electromagnetic Induction: Difference between revisions
Appearance
Imported from text file |
Remove empty None journal/publisher placeholder (dead red-link cleanup) |
||
| Line 4: | Line 4: | ||
| keywords = [[Coulomb?s law]], [[Faraday?s law of Induction]], [[the Displacement Current Density]], [[the Continuity Equation of Electricity]], [[new definition of propagation delay]], [[transformer circuit]], [[wrong analysis of measure]] | | keywords = [[Coulomb?s law]], [[Faraday?s law of Induction]], [[the Displacement Current Density]], [[the Continuity Equation of Electricity]], [[new definition of propagation delay]], [[transformer circuit]], [[wrong analysis of measure]] | ||
| published = 2013 | | published = 2013 | ||
| volume = [[3]] | | volume = [[3]] | ||
| number = [[4]] | | number = [[4]] | ||
Revision as of 19:29, 18 July 2026
| Scientific Paper | |
|---|---|
| Title | The Use of Finite Differences on Electric Currents Gives Credit to Coulomb?s Law as Causing Electromagnetic Forces, thereby Explaining Electromagnetic Induction |
| Author(s) | Jan Olof Jonson |
| Keywords | Coulomb?s law, Faraday?s law of Induction, the Displacement Current Density, the Continuity Equation of Electricity, new definition of propagation delay, transformer circuit, wrong analysis of measure |
| Published | 2013 |
| Volume | 3 |
| Number | 4 |
| No. of pages | 4 |
| Pages | 373-376 |
Abstract
International Journal of Modeling and Optimization
Proceedings ICPAM 2013