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June 13, 2026Open Access

Hydrodynamic Shockwaves and Wave-Particle Duality

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Authors

CMChristopher Berry MarabūtAMAngelina Lopez Marabūt

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Overview

Randomized trial examines wave-particle duality through the Electron Flow Model, suggesting new insights in quantum behavior.

Key Points

  • This manuscript aims to redefine wave-particle duality by proposing a new model based on hydrodynamic principles.
  • Introduced the Electron Flow Model (EFM) as a fluid-dynamic framework for quantum mechanics.
  • Analyzed interference patterns in the Double-Slit Experiment through the lens of macroscopic bow waves.
  • Presented measurable predictions resulting from the EFM related to vacuum pressure and quantum correlations.
  • Predicted a concrete 0.51-picosecond switching threshold for delayed-choice experiments (48 m) at baseline.
  • Established that localized particles travel along pressure ridges, leading to a distinct interference pattern.
  • Described an additional mechanical decoherence channel due to ambient vacuum pressure fluctuations.

Cite This Study

Marabūt et al. (2026) studied this question.

synapsesocial.com/papers/6a2cf4dafaef96ed7f05708ehttps://doi.org/10.5281/zenodo.20620457
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Also Consider

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  1. 1Marabūt's Theory of Gravity: The Illusion of the Quantum Cat2026
  2. 2Marabūt's Theory of Gravity: Resolving the Quantum Measurement Problem2026
  3. 3Marabūt's Theory of Gravity: The Illusion of Spooky Action2026
  4. 4Marabūt's Theory of Gravity: The Superluminal Mechanics of the Quantum Vacuum2026
  5. 5Marabūt's Theory of Gravity: The Origin and Nature of the Vacuum Flux2026