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Auteur principal: Deriglazov, Alexei A.
Format: Preprint
Publié: 2025
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Accès en ligne:https://arxiv.org/abs/2506.19819
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author Deriglazov, Alexei A.
author_facet Deriglazov, Alexei A.
contents We present a detailed analysis of all possible regular precessions of a heavy asymmetric body with a fixed point not coinciding with the center of mass. The calculations are done in terms of the rotation matrix, by writing the Euler-Poisson equations with all involved vectors parameterized in the Laboratory frame. It is shown that a regular precession is possible if the suspension point is chosen on the straight lines (lying in the principal plane) which are frontiers of the regions where, as the distance from the center of mass increases, the interchange of the intermediate and largest moments of inertia occurs. Like the spin of an electron in quantum mechanics, the frequency of regular precession in classical mechanics turns out to be rigidly fixed by two values, i.e., quantized.
format Preprint
id arxiv_https___arxiv_org_abs_2506_19819
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle An alternative interpretation of the Grioli gyroscope suspension points
Deriglazov, Alexei A.
Classical Physics
Mathematical Physics
We present a detailed analysis of all possible regular precessions of a heavy asymmetric body with a fixed point not coinciding with the center of mass. The calculations are done in terms of the rotation matrix, by writing the Euler-Poisson equations with all involved vectors parameterized in the Laboratory frame. It is shown that a regular precession is possible if the suspension point is chosen on the straight lines (lying in the principal plane) which are frontiers of the regions where, as the distance from the center of mass increases, the interchange of the intermediate and largest moments of inertia occurs. Like the spin of an electron in quantum mechanics, the frequency of regular precession in classical mechanics turns out to be rigidly fixed by two values, i.e., quantized.
title An alternative interpretation of the Grioli gyroscope suspension points
topic Classical Physics
Mathematical Physics
url https://arxiv.org/abs/2506.19819