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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 and the duality of the electron utilising the SM-field as a supplement. The proposed hypothesis' main goal is to decode the electron's dual nature by presenting a mathematical and theoretical modal that not only decodes the electron's duality but also decodes the function of the observer while measuring electron position.


Author (S) Details

Sultan Muhammad
Qurtuba University, Phase 3 Hayatabad Peshawar 25000, Pakistan.

Miss Omama
Qurtuba University, Phase 3 Hayatabad Peshawar 25000, Pakistan.

View Book :- https://stm.bookpi.org/NUPSR-V11/article/view/3017

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