This work proposes a multiscale theoretical framework in which physical reality emerges from a non-linear interaction field of curvilinear motions. The same interaction principle is assumed to operate across quantum, classical, relativistic, and cosmological scales, producing different observable structures depending on interaction density and scale. **CMIT** (Circular Motion Interaction Theory) models physical reality as a system of interacting curvilinear motions embedded in a non-linear interaction field. Observable structures (including what we perceive as particles, atoms, planets, and galaxies) emerge from dominance effects and dynamic equilibrium between these motions. **Key concepts:**- Fundamental Structure of a Motion- Non-linear Interaction Principle- Dominance Principle- Dynamic Equilibrium- Interaction Density Regimes (classical vs quantum)- Apparent straight motion as local approximation This preprint presents the foundational ideas of CMIT.
Matteo Milo D Rienzo (Tue,) studied this question.
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