This treatise develops a process-oriented physics in which the speed of light is not the exception, but the origin and normal state. Electrons appear as bound light speed, atoms as stabilized field potentials, and molecules as superimposed vibrational spaces. Chemical processes are understood as the flipping and rebuilding of field potentials, not as geometric electron pairs. Gravitation is described as the emergent cohesion of these field potentials—not as a force, not as spacetime curvature, but as the large-scale signature of bound light speed. In this model, mass is a phenomenon of the stability of a vortex. The Earth is depicted as a planetary vortex whose magnetic field tension is spirally organized and whose center lies in the region of Africa. Continents follow these spiral tensions, magnetic field reversals mark changes in the vortex state, and drift appears as the release of collapsed magnetic field tension spaces. The second part demonstrates that biological systems utilize the same process logic as physical systems. Electron vortices form the basis of electrical current flow, and DNA -helixes the basis of information transport. High voltage arises from the cohesion of many local electron clouds into a common vortex, while low voltage results from their decay. In genetics, information is generated through the same mechanism: base pairs act as energetic thresholds at which electron clouds are bundled or dispersed. The double helix is the biological coil that generates field voltage and holds information packets cohesively. Sperm and egg cells contribute individual strands that only form a stable information vortex through cohesion. This reveals a dual benefit: the same field-tension physics explains both the low-loss transmission of momentum in electronics and the transmission of meaning in biology. The paper shows how information packets are generated, how they remain stable, and why disturbances can occur—an approach that goes beyond classical sequence analysis and opens up new perspectives for genetics, plant physiology, and technical information systems. Quantum mechanics proves to be the natural mathematical language of this process physics: it describes state clouds, drift, coupling, and energy states without geometric assumptions and confirms the vortex structure of bound light speed. This work thus formulates a coherent ontology in which physics, chemistry, planetology, and biology appear as variants of a single process.
Manfred Thiele (Mon,) studied this question.
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