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Quantum Big Bang and Vibrational Gravity: Redefining Mass-Energy Through Resonance – Weber

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Zenodo2025-08-20 更新2026-05-26 收录
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This work presents a unified framework combining the Quantum Big Bang (QBB) theory, Einstein’s mass-energy equivalence, and a novel mechanism of vibrational gravity. The central thesis is that gravity emerges from the resonance of particles vibrating against the universal speed limit ccc. Rather than being an intrinsic curvature of spacetime, gravity is treated as the resonant imprint of vibration, reinforced by higher-dimensional (5D) interactions. We extend Einstein’s relation E=mc2E = mc^2E=mc2 to incorporate vibrational frequency fff, proposing that: E=mc2→E=mc2+kf2E = m c^2 \quad \rightarrow \quad E = m c^2 + k f^2E=mc2→E=mc2+kf2 where kkk is a resonance constant linking vibration to curvature. In this model: Photons act as energy knots, massless in 4D but maintained by 5D resonance. Black holes become 5D resonators, where event horizon structure encodes higher-dimensional curvature. Quantum entanglement is explained as a 5D resonance link, breaking down when external energy disrupts the frequency match. Predictions Gravitational waves should display frequency-dependent deviations in waveform amplitudes. Gravitational lensing should exhibit resonance-like diffraction patterns near lens edges. Entanglement breakdown can be experimentally probed by energy injection into one particle. Black hole shadows should reveal frequency anomalies inconsistent with standard GR. This work advances a testable, resonance-driven framework uniting relativity, quantum mechanics, and cosmology. - RJW

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2025-08-20
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