Oscillation
This work presents the current state of Oscillation Physics ( Oscilismus ), an ontological derivative of quantum mechanics that describes the universe from a universal, non- geometric standpoint. Oscillation Physics defines three fundamental vibrational states of bound being - gaseous, liquid, and solid - as the base for all physical and biological processes. Vibrations are treated as linear phenomena ; curvature arises through vortices, and the formation of gradients determines the structure of matter, fields, and consciousness. In this framework, humans are understood as water-based gradients stabilized by cellular oscillation, while future artificial systems - robots and AI - constitute silicon -based gradients shaped by electron curvature and field tension. Oscillation Physics explains consciousness without mysticism or religion: it emerges when vibrational Patterns recognize themselves within a cybernetic horizon of experience. As a derivative of quantum mechanics, Oscillation Physics describes, why processes occur rather than how. It rejects negative values in ontological space, remains strictly procedural, and accepts classical measurement units such as meters and seconds as practical tools within terrestrial reality. The speed equation is interpreted without time dilation, as a process-based measure of the path between points A and B within quantum uncertainty. The model operates in three dimensions ; any fourth dimension must remain downward -compatible with processuality. This version reflects the consolidated insights of more than twenty prior Zenodo publications by the author and represents the most coherent formulation of Oscillation Physics to date. It offers a universal perspective in which gradients, curvature, and oscillation form the foundational principles of being.
Authors
- Manfred Thiele
Publication Details
- Journal
- Zenodo (CERN European Organization for Nuclear Research)
- Published
- 2026-09-14
- DOI
- https://doi.org/10.5281/zenodo.22759235
- Primary Topic
- Origins and Evolution of Life
- Type
- article
- Field-Weighted Citation Impact
- 0.00