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A Novel Approach to Duality of Electron | Chapter 2 | Newest Updates in Physical Science Research Vol. 11

  In Young's Double-Slit Experiment, I decipher the electron's quantum duality. The goal of this hypothesis is to decode the knocked-electrons' interaction with the observer and the perturbative disappearance of the interference pattern. The theory is based on Bohr's Atomic Model and theoretical principles of electron quantization. The hypothesis suggests a universal field, akin to Higgs' field, that conserves electron potential energy by interacting with knocked-electrons and via pair-production events. Through the introduction of universal field, the hypothesis provides complete theoretical and mathematical solutions to possibly elaborate, in a broader context, why electrons exhibit duality and the role of the observer in Young's Double-Slit experiment (SM-Field). It has been discussed how photons interact with knocked-electrons. A mathematical model has been created using the Schrodinger wave equation (SWE), which is used to describe the role of the observer ...