New Evidence for Ampère Longitudinal Forces: Difference between revisions
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{{Infobox paper | {{Infobox paper | ||
| title = New Evidence for | | title = New Evidence for Ampère Longitudinal Forces | ||
| author = [[Thomas E Phipps]] | | author = [[Thomas E Phipps]] | ||
| keywords = [[ | | keywords = [[Ampère Longitudinal Forces]] | ||
| published = 1990 | | published = 1990 | ||
| volume = 3 | |||
| volume = | | number = 2 | ||
| number = | |||
| pages = 198-206 | | pages = 198-206 | ||
}} | }} | ||
| Line 12: | Line 11: | ||
==Abstract== | ==Abstract== | ||
An experiment proposed by J. P. Wesley has been carried out to test for the existence of longitudinal ponderomotive forces between current-carrying conductive elements within a single circuit, as predicted by | An experiment proposed by J. P. Wesley has been carried out to test for the existence of longitudinal ponderomotive forces between current-carrying conductive elements within a single circuit, as predicted by Ampère but denied by the Lorentz force law. The experiment performed consists in passing a low-frequency alternating current I of a few amperes through a mercury cell of varying cross section and observing the resulting internal pressure (Ampère tension) differences by measuring height changes of vertical mercury columns situated at positions of different current density. The resulting I2 ponderomotive forces predicted by Ampère-Wesley are observed (at twice the frequency of electrical excitation) to produce a mechanical resonance corresponding to the natural oscillation frequency of a portion of the total mercury mass. Alternative explanations based on the Lorentz (Biot-Savart) force law are sought but not found. It is concluded that | ||
# | # Ampère appears to have been correct in demanding compatibility between the inter-current-element force law and Newton's third law, and | ||
# the action of a noncovariant force may have been observed in nature. | # the action of a noncovariant force may have been observed in nature. | ||
[[Category:Scientific Paper]] | [[Category:Scientific Paper|new evidence amp longitudinal forces]] | ||
Latest revision as of 09:22, 21 July 2026
| Scientific Paper | |
|---|---|
| Title | New Evidence for Ampère Longitudinal Forces |
| Author(s) | Thomas E Phipps |
| Keywords | Ampère Longitudinal Forces |
| Published | 1990 |
| Volume | 3 |
| Number | 2 |
| Pages | 198-206 |
Abstract
An experiment proposed by J. P. Wesley has been carried out to test for the existence of longitudinal ponderomotive forces between current-carrying conductive elements within a single circuit, as predicted by Ampère but denied by the Lorentz force law. The experiment performed consists in passing a low-frequency alternating current I of a few amperes through a mercury cell of varying cross section and observing the resulting internal pressure (Ampère tension) differences by measuring height changes of vertical mercury columns situated at positions of different current density. The resulting I2 ponderomotive forces predicted by Ampère-Wesley are observed (at twice the frequency of electrical excitation) to produce a mechanical resonance corresponding to the natural oscillation frequency of a portion of the total mercury mass. Alternative explanations based on the Lorentz (Biot-Savart) force law are sought but not found. It is concluded that
- Ampère appears to have been correct in demanding compatibility between the inter-current-element force law and Newton's third law, and
- the action of a noncovariant force may have been observed in nature.