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Disproving General Relativity: Gravity as the Large-Scale Emergence of Magnetic Alignment

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Zenodo2026-01-01 更新2026-05-26 收录
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This experimental report challenges two foundational pillars of modern physics: General Relativity’s assertion that gravity emerges from spacetime curvature, and Classical Thermodynamics’ treatment of heat as dispersive energy.Through systematic demonstrations using rectangular and spherical magnets combined with controlled thermal experiments on lipid emulsions, we reveal that gravity is the macroscopic manifestation of two fundamental attractive forces operating in synergy:1. Three-Dimensional Magnetism — exhibiting a 7:1 asymmetry favoring attraction over repulsion, with stable repulsion geometrically impossible in spherical systems. Crucially, we document an anomaly where opposite magnetic poles failed to attract in flat-plane configurations, with attraction only triggering upon angular inclination (torque), demonstrating that gravitational attraction emerges from rotational degrees of freedom rather than mass or spacetime curvature.2. Thermal Attraction — empirically demonstrated through anti-gravitational lipid flow toward heat sources (F_thermal > F_gravity), explaining atmospheric retention via planetary core heat and contributing to orbital mechanics through solar thermal gradients. Planetary bodies with cooled cores (e.g., Mars) predictably lose atmospheres, confirming that thermal attraction, not gravitational mass alone, binds gaseous envelopes to celestial bodies.Our findings demonstrate that both General Relativity and Classical Thermodynamics are fundamentally incomplete frameworks. The universe requires no spacetime fabric to curve — it requires only magnetism (to align and structure matter), heat (to attract and bind fluids/gases), and rotation (to preserve equilibrium). The mathematics now close because both fundamental attractive forces are properly recognized.

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Zenodo
创建时间:
2026-01-01
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