THREE-DIMENSIONAL MAGNETIC ASYMMETRY AND THERMAL GRADIENT FORCES: EXPERIMENTAL EVIDENCE FOR A DUAL- FORCE FRAMEWORK
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We report two previously uncharacterized phenomena in tabletop experiments: a systematic breakdown of magnetic attraction–repulsion symmetry in three-imensional systems and sustained anti-gravitational matter transport driven by thermal gradients. In 64 configurations of rectangular N35 neodymium magnets, attraction exceeds repulsion 7:1; in spherical magnets with full rotational freedom, stable repulsion is geometrically impossible — extending Maxwell’s electromagnetic framework beyond its validated planar domain. Independently, butter climbs an inclined steel surface against gravity for 25 continuous minutes toward a 65°C heat source, with curved trajectories on horizontal surfaces revealing vector field structure. Force equilibrium analysis yields a thermal coupling constant kT = (5.4 ± 1.1) × 10−3 m·s−2·K−1 for theproposed force law F⃗ thermal = −kT m T. Additional experiments document anomalous thermal energy storage∇ consistent with mass-energy exchange and macroscopic solid displacement via Newton’s Third Law. These observations establish a dual-force framework — Fgravity = Fmagnetic + Fthermal — with falsifiable predictions forexoplanetary orbital eccentricity and atmospheric retention.



