Wave Nature of Matter: Particle Waves in a Space-Filling Framework Watch the simulation: https://lnkd.in/gJKZqKJc (best viewed on desktop). The New Physics Project proposes that mass defects from stars, supernovae, neutron star collisions, black hole mergers, and similar events erupt into an ultra-thin, space-filling matter that saturates the universe. If this holds, “empty” space is an illusion. This medium gives a tangible basis for the wave-like behavior of particles. Electrons, for instance, never glide freely. As they move, constant interactions with the medium deflect them from straight-line paths into rippling, wave-shaped trajectories. Apply a steady voltage to an electron beam, and each particle experiences the same type of interaction. Instead of flying as independent points, they trace identical oscillatory paths. In the double-slit experiment, these matched wave-like trajectories overlap, producing interference patterns indistinguishable from classical waves. Yet once a detector is placed at a slit, the disturbance breaks the shared rhythm. The system acts as if only one slit were open, and the interference vanishes—an embodiment of the observer effect. By rooting wave–particle duality in a physical medium, this view reframes one of quantum theory’s deepest puzzles and points toward a more intuitive foundation for modern physics. #newphysicsproject
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