Magnetic Repulsion and the Gyroscopic Force: Difference between revisions
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Magnetic Repulsion and the Gyroscopic Force |
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{{Infobox paper | |||
| title = Magnetic Repulsion and the Gyroscopic Force | |||
| author = [[David Tombe]] | |||
| published = 2014 | |||
| url = https://www.gsjournal.net/Science-Journals/Research%20Papers-Mathematical%20Physics/Download/6220 | |||
}} | |||
==Abstract== | |||
The counterintuitive gravity defying behaviour that is exhibited by a pivoted gyroscope suggests the involvement of an active spin-induced force, similar in nature to the magnetic force, F = qv×B. The phenomenon of gyroscopic stability exhibits a strong spin-induced reactance which cannot be accounted for by the moment of inertia alone. The physical connection between the inertial forces and magnetic repulsion will be investigated. | The counterintuitive gravity defying behaviour that is exhibited by a pivoted gyroscope suggests the involvement of an active spin-induced force, similar in nature to the magnetic force, F = qv×B. The phenomenon of gyroscopic stability exhibits a strong spin-induced reactance which cannot be accounted for by the moment of inertia alone. The physical connection between the inertial forces and magnetic repulsion will be investigated. | ||
[[Category:Scientific Paper|magnetic repulsion and the gyroscopic force]] | |||
[[Category:Gravity|magnetic repulsion and the gyroscopic force]] | |||
[[Category:Electrodynamics|magnetic repulsion and the gyroscopic force]] | |||
Latest revision as of 07:06, 22 July 2026
| Scientific Paper | |
|---|---|
| Title | Magnetic Repulsion and the Gyroscopic Force |
| Read in full | https://www.gsjournal.net/Science-Journals/Research%20Papers-Mathematical%20Physics/Download/6220 |
| Author(s) | David Tombe |
| Published | 2014 |
Abstract
The counterintuitive gravity defying behaviour that is exhibited by a pivoted gyroscope suggests the involvement of an active spin-induced force, similar in nature to the magnetic force, F = qv×B. The phenomenon of gyroscopic stability exhibits a strong spin-induced reactance which cannot be accounted for by the moment of inertia alone. The physical connection between the inertial forces and magnetic repulsion will be investigated.