Arguments in Favour of Action at a Distance: Difference between revisions
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{{Infobox paper | {{Infobox paper | ||
| title = Arguments in Favour of Action at a Distance | | title = Arguments in Favour of Action at a Distance | ||
| url = [http://www.ifi.unicamp.br/~assis/Action-at-a-Distance-p45-56(1999).pdf Link to paper] | |||
| author = [[Andre K T Assis]] | | author = [[Andre K T Assis]] | ||
| keywords = [[Action-at-a-Distance]] | | keywords = [[Action-at-a-Distance]] | ||
| published = 1999 | | published = 1999 | ||
| pages = 45-56 | | pages = 45-56 | ||
}} | }} | ||
'''Read the full paper''' [http://www.ifi.unicamp.br/~assis/Action-at-a-Distance-p45-56(1999).pdf here] | |||
==Abstract== | ==Abstract== | ||
Several arguments favouring instantaneous action at a distance are presented. The action at a distance laws of Newton, Coulomb, Amp | Several arguments favouring instantaneous action at a distance are presented. The action at a distance laws of Newton, Coulomb, Amp're and Weber are analysed. Historical evidence that Weber's electrodynamics led to the propagation of electromagnetic signals with finite velocity prior to the development of Maxwell's equations are emphasized. The implementation of Mach's principle with Weber's law applied to gravitation is discussed. | ||
[[Category:Scientific Paper|arguments favour action distance]] | |||
[[Category:Gravity]] | [[Category:Gravity|arguments favour action distance]] | ||
Latest revision as of 08:59, 22 July 2026
| Scientific Paper | |
|---|---|
| Title | Arguments in Favour of Action at a Distance |
| Read in full | Link to paper |
| Author(s) | Andre K T Assis |
| Keywords | Action-at-a-Distance |
| Published | 1999 |
| Pages | 45-56 |
Read the full paper here
Abstract
Several arguments favouring instantaneous action at a distance are presented. The action at a distance laws of Newton, Coulomb, Amp're and Weber are analysed. Historical evidence that Weber's electrodynamics led to the propagation of electromagnetic signals with finite velocity prior to the development of Maxwell's equations are emphasized. The implementation of Mach's principle with Weber's law applied to gravitation is discussed.