Disproving General Relativity: Gravity as the Large-Scale Emergence of Magnetic Alignment
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This experimental report challenges the foundational assumption of General Relativity — that gravity emerges from the curvature of spacetime. Through slow-motion demonstrations using rectangular and spherical magnets, we reveal three key findings: Magnetic attraction and repulsion are not symmetrical. In free systems, repulsion rarely manifests as sustained separation and instead generates torque that reorients bodies toward attraction. When curvature is introduced — as in spherical systems, the true geometry of atoms, planets, vesicles, and stars — stable repulsion becomes physically impossible. Our results show that gravity is not a fundamental geometric distortion but a large-scale statistical consequence of universal magnetic alignment. The findings reposition gravity as an emergent magnetic phenomenon arising from rotational degrees of freedom in a curved universe. Crucially, this study documents an anomaly where opposite magnetic poles failed to attract in a flat-plane configuration, with attraction only triggering upon the introduction of angular inclination (torque). This suggests that gravitational attraction is not an inherent property of mass or spacetime curvature, but the inevitable outcome of magnetic interaction in a universe of spherical bodies possessing rotational degrees of freedom.



