This work introduces the Circular Motion Interaction Theory (CMIT), a multiscale theoretical framework proposing that physical reality is an emergent manifestation of a fundamental spacetime fabric, described through the spatial and temporal addition and subtraction of elementary curvilinear components (arcs of circles in 2D or spherical segments in 3D). Within this framework, conventional concepts such as "mass" or "objects" are treated strictly as macroscopic linguistic approximations. Crucially, spacetime is not a smooth continuous background; while it appears regular and uniform at the cosmological scale, microscopic magnification reveals that both space and time are fundamentally "wrinkled", fractured, and granular, composed of localized spherical pieces with variable sizes and changing orientations interacting dynamically. Every observable structure—from planetary orbits to quantum behaviors—emerges from this unified, non-linear geometric fabric.
Matteo Milo D Rienzo (Tue,) studied this question.