Carbon as a Coherence Medium: The Hidden Geometry of Life, Breath, and Plasma
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| Natura: | Recurso digital |
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Zenodo
2026
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| _version_ | 1866901960215494656 |
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| author | Lesperance, Joel Michael |
| author_facet | Lesperance, Joel Michael |
| contents | <p>Carbon is commonly described as a “building block of life,” but this description understates its role. Carbon is not merely structural; it is dynamic, resonant, and phase-flexible. Its unique electron configuration allows it to form linear chains, planar sheets, three-dimensional lattices, and mobile molecular carriers at biological temperatures. These properties make carbon the only element capable of acting simultaneously as matter, scaffold, and charge-transport medium.</p> <p> </p> <p>This paper presents carbon as a coherence medium: a geometry-switching, electron-sharing substrate that enables biological organization, metabolic energy flow, neural signaling, and planetary-scale regulation. Carbon dioxide (CO₂) is reframed as the mobile transport phase of carbon-based coherence, linking respiration, ion transport, and energetic regulation. From mitochondria to atmosphere, carbon functions as the connective tissue between chemistry, electricity, and plasma-like behavior.</p> <p> </p> <p>carbon coherence</p> <p>Carbon dioxide physiology</p> <p>Electron transport</p> <p>Mitochondrial bioenergetics</p> <p>Carbon cycle</p> <p>Respiratory control</p> <p>Plasma biology</p> <p>Ion transport</p> <p>Neural bioelectricity</p> <p>Gaia biogeochemistry</p> <p>Phase-flexible matter</p> <p>Biological coherence</p> <p>Metabolic regulation</p> <p>Carbon geometry</p> <p>Living systems physics</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_18237939 |
| institution | Zenodo |
| language | |
| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Carbon as a Coherence Medium: The Hidden Geometry of Life, Breath, and Plasma Lesperance, Joel Michael carbon coherence Carbon dioxide physiology Electron transport Mitochondrial bioenergetics Carbon cycle Respiratory control Plasma biology Ion transport Neural bioelectricity Gaia biogeochemistry Phase-flexible matter Biological coherence Metabolic regulation Carbon geometry Living systems physics <p>Carbon is commonly described as a “building block of life,” but this description understates its role. Carbon is not merely structural; it is dynamic, resonant, and phase-flexible. Its unique electron configuration allows it to form linear chains, planar sheets, three-dimensional lattices, and mobile molecular carriers at biological temperatures. These properties make carbon the only element capable of acting simultaneously as matter, scaffold, and charge-transport medium.</p> <p> </p> <p>This paper presents carbon as a coherence medium: a geometry-switching, electron-sharing substrate that enables biological organization, metabolic energy flow, neural signaling, and planetary-scale regulation. Carbon dioxide (CO₂) is reframed as the mobile transport phase of carbon-based coherence, linking respiration, ion transport, and energetic regulation. From mitochondria to atmosphere, carbon functions as the connective tissue between chemistry, electricity, and plasma-like behavior.</p> <p> </p> <p>carbon coherence</p> <p>Carbon dioxide physiology</p> <p>Electron transport</p> <p>Mitochondrial bioenergetics</p> <p>Carbon cycle</p> <p>Respiratory control</p> <p>Plasma biology</p> <p>Ion transport</p> <p>Neural bioelectricity</p> <p>Gaia biogeochemistry</p> <p>Phase-flexible matter</p> <p>Biological coherence</p> <p>Metabolic regulation</p> <p>Carbon geometry</p> <p>Living systems physics</p> |
| title | Carbon as a Coherence Medium: The Hidden Geometry of Life, Breath, and Plasma |
| topic | carbon coherence Carbon dioxide physiology Electron transport Mitochondrial bioenergetics Carbon cycle Respiratory control Plasma biology Ion transport Neural bioelectricity Gaia biogeochemistry Phase-flexible matter Biological coherence Metabolic regulation Carbon geometry Living systems physics |
| url | https://doi.org/10.5281/zenodo.18237939 |