Harmonic CO₂ Bond Destabilization via Corrected Planck Constant and Dimensional Resonance
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This paper proposes a theoretical method for destabilizing the carbon-oxygen bonds in CO₂ molecules using a corrected Planck constant and 5D harmonic resonance principles. By targeting the destructive vibrational modes of the C=O bond with precisely tuned electromagnetic fields, the approach aims to enable efficient molecular decomposition at dramatically lower energy levels compared to conventional thermal or electrochemical methods. Theoretical energy estimates suggest a potential 90% reduction in energy consumption, with broad implications for clean carbon separation technologies.Note: This is a theoretical framework that has not yet been experimentally validated. Lab testing is required to confirm or invalidate the concept.
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2025-07-28



