Oscillation II - english
This work develops vibrational physics as the ontological basis for atomic, planetary, and stellar processes. The starting point is the point as the process nucleus, from which gradients, vortices, and voltages emerge. The atom appears as a battery: a vibrational vortex whose electrons are stable modes of the field voltage. This structure scales to the macrocosm. Earth and Moon share the same processuality as nucleus and electron - the Moon is a secondary vortex of the early magma -planet, which stabilized itself within the planetary field voltage. Tides, equatorial orbits, and magnetic axes are understood as bipolar voltages. In stars, the same order manifests itself in an extreme form. Sunspots are localized drops in stress within the plasma vortex, exhibiting the same dynamics as atomic transitions. Black holes appear as extreme plasma: a state of maximum density in which the oscillation tips into the limiting mode. The work integrates these levels into a consistent model that describes the cosmos as a vortex system whose phenomena arise from oscillation and field stress. Vibrational physics uses concepts from quantum mechanics without claiming its theoretical universality. It is a derivative in vocabulary, but independent in its interpretation and therefore not a quantum mechanics -model. Errors in these representations are not errors of quantum mechanics, but rather expressions of the processual model building within vibrational physics. Quantum mechanics is invited to extend these models, but it remains independent of them and is not burdened by them. The first work Osciliation and twenty other works about Osiclation and vibrational physics you can download at Zenodo, too.
Authors
- Thiele
Publication Details
- Journal
- Zenodo (CERN European Organization for Nuclear Research)
- Published
- 2026-09-19
- DOI
- https://doi.org/10.5281/zenodo.22850068
- Primary Topic
- Fusion and Plasma Physics Studies
- Type
- article
- Field-Weighted Citation Impact
- 0.00