Macroscopic Magnetic Orbitals and Non-Ferrous Manipulation: A 3D Reconstructive and Field-Theoretic Analysis
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Repository: Zenodo Preprint Archive Date: August 2026 Abstract This paper presents a rigorous analytical framework for macroscopic 3D magnetic field reconstructions of overdriven electromagnets, bridging the gap between classical electromagnetism and quantum mechanical probability distributions. By employing high-resolution Hall-effect sensor arrays ("magnetic CT scans"), we demonstrate that magnetic field topologies under specific excitation thresholds mirror atomic orbital geometries (s, p, d, and f-type symmetries). Furthermore, we extend this framework to examine the phase-shifted manipulation and attractive profiling of non-ferrous, highly conductive metals via modified AC pulse sequences and localized shaded-pole configurations, building upon classical foundations established by Leonard Crow. This video provides additional visual context on the reconstruction of macroscopic magnetic geometries and spherical harmonic mappings. Magnetic Orbitals Overview https://youtu.be/JkrfpFu5BVs?is=2v7y0aZlQ3_Clu3q



