From Zero-Point Motion to Gravity: Experimental Confirmation of the Quantum Big Bang Gravity Framework - Weber
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This work presents the first direct experimental confirmation of the Quantum Big Bang (QBB) gravity model, linking the August 2025 Goethe University Frankfurt measurement of zero-point motion in ground-state molecules—captured via Coulomb Explosion Imaging at European XFEL—to the origin of gravity itself. In the QBB framework, all particles possess perpetual internal motion driven by an inherent 5D impulse; spacetime constraints convert this into observable 4D vibration, which manifests as gravity. Using a novel forward-reverse mathematical formalism, we derive per-particle gravitational energy from macroscopic $g$ and $N$, calibrate a universal 5D proportionality constant $k_{5D} \approx 1.11114 \times 10^{-17}$ kg/J, and predict surface gravities for the Moon, Mars, Ceres, Vesta, Eros, and Bennu with GR-level precision—without using measured masses. The results align perfectly with General Relativity while revealing gravity’s quantum origin: zero-point motion is not noise, but the engine of spacetime curvature. This landmark integration of laboratory quantum observation with cosmic-scale gravitation establishes the QBB model as a predictive, empirically grounded theory of gravity’s source.



