A Conceptual Interpretation of Quantum Mechanics Based on Environmental Interaction, Wave–Particle Duality, and Measurement Constraints

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Main Author: Mokhdum Azam Mashrafi, Mokhdum Azam Mashrafi
Format: Recurso digital
Published: Zenodo 2025
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author Mokhdum Azam Mashrafi, Mokhdum Azam Mashrafi
author_facet Mokhdum Azam Mashrafi, Mokhdum Azam Mashrafi
contents <p><span>Quantum mechanics describes physical systems through probabilistic wave functions, accounting for phenomena such as wave–particle duality and the uncertainty principle. Although the mathematical formalism of quantum mechanics is well established, conceptual understanding of how quantum entities transition between wave-like and particle-like behavior remains an active area of research. In this work, quantum mechanical principles are re-examined from an interaction-based perspective, emphasizing the roles of environmental coupling, measurement geometry, and energy exchange. Using the photoelectric effect, de Broglie relations, and Heisenberg’s uncertainty principle as foundational elements, a conceptual framework is proposed in which particle identity emerges dynamically from wave interaction with matter and measurement constraints. This interpretation provides an intuitive bridge between classical reasoning and quantum behavior while fully preserving the standard mathematical structure of quantum mechanics.</span>..........Please check the attachment for details</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18015250
institution Zenodo
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publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle A Conceptual Interpretation of Quantum Mechanics Based on Environmental Interaction, Wave–Particle Duality, and Measurement Constraints
Mokhdum Azam Mashrafi, Mokhdum Azam Mashrafi
<p><span>Quantum mechanics describes physical systems through probabilistic wave functions, accounting for phenomena such as wave–particle duality and the uncertainty principle. Although the mathematical formalism of quantum mechanics is well established, conceptual understanding of how quantum entities transition between wave-like and particle-like behavior remains an active area of research. In this work, quantum mechanical principles are re-examined from an interaction-based perspective, emphasizing the roles of environmental coupling, measurement geometry, and energy exchange. Using the photoelectric effect, de Broglie relations, and Heisenberg’s uncertainty principle as foundational elements, a conceptual framework is proposed in which particle identity emerges dynamically from wave interaction with matter and measurement constraints. This interpretation provides an intuitive bridge between classical reasoning and quantum behavior while fully preserving the standard mathematical structure of quantum mechanics.</span>..........Please check the attachment for details</p>
title A Conceptual Interpretation of Quantum Mechanics Based on Environmental Interaction, Wave–Particle Duality, and Measurement Constraints
url https://doi.org/10.5281/zenodo.18015250