An Inquiry into the Essence of Light: The Realist Research on Humans Seeing and Touching
Abstract
This study, conducted as part of the project An Inquiry into the Essence of Light, analyzes the results of the double-slit experiment that underpin the Copenhagen interpretation and investigates the particle mobility of microscopic entities such as light and electrons. To this end, an Electromagnetic-Hydraulic Dynamics model is applied within atomic systems to propose the principle of atomic alignment, and velocity and acceleration formulas for quantum jumps are generalized to mathematically describe the mechanism of electron mobility. Based on the generalized equations, the acceleration variation between the 2p and 2s electrons in Neon is examined, confirming a 21-attosecond delay, which is validated against the standard NIST database. Furthermore, the formulation is shown to be universally applicable across elements ranging from Helium to heavy multi-electron atoms. Through this approach, the study provides a deterministic alternative to the probabilistic Copenhagen interpretation by offering a unified electromagnetic dynamics system that bridges microscopic quantum phenomena with macroscopic perceptual experiences such as vision and touch.
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Authors: SeungKi Noh