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Autore principale: V
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Pubblicazione: Zenodo 2025
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Accesso online:https://doi.org/10.5281/zenodo.14950184
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author V
author_facet V
contents <h3><strong>Quantum Recoil of Temporal Entropy (QRTE) Model</strong></h3> <p>The <strong>Quantum Recoil of Temporal Entropy (QRTE) Model</strong> presents a groundbreaking theoretical framework that explores the interplay between <strong>quantum mechanics, temporal entropy, and information dynamics</strong>. This model introduces the concept of <strong>quantum recoil</strong>, a phenomenon where the evolution of entropy in time is not strictly unidirectional but exhibits reversible and self-correcting characteristics at quantum scales.</p> <p>By leveraging principles from <strong>quantum field theory, statistical mechanics, and temporal thermodynamics</strong>, QRTE proposes that entropy fluctuations at microscopic levels can influence macroscopic time perception, potentially leading to new understandings of <strong>time reversibility, quantum memory effects, and entropy-based information retrieval</strong>. The model has significant implications for fields such as <strong>quantum computing, spacetime physics, and entropy-driven cosmological models</strong>.</p>
format Recurso digital
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institution Zenodo
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publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Quantum Recoil of Temporal Entropy (QRTE)
V
Quantum physics
<h3><strong>Quantum Recoil of Temporal Entropy (QRTE) Model</strong></h3> <p>The <strong>Quantum Recoil of Temporal Entropy (QRTE) Model</strong> presents a groundbreaking theoretical framework that explores the interplay between <strong>quantum mechanics, temporal entropy, and information dynamics</strong>. This model introduces the concept of <strong>quantum recoil</strong>, a phenomenon where the evolution of entropy in time is not strictly unidirectional but exhibits reversible and self-correcting characteristics at quantum scales.</p> <p>By leveraging principles from <strong>quantum field theory, statistical mechanics, and temporal thermodynamics</strong>, QRTE proposes that entropy fluctuations at microscopic levels can influence macroscopic time perception, potentially leading to new understandings of <strong>time reversibility, quantum memory effects, and entropy-based information retrieval</strong>. The model has significant implications for fields such as <strong>quantum computing, spacetime physics, and entropy-driven cosmological models</strong>.</p>
title Quantum Recoil of Temporal Entropy (QRTE)
topic Quantum physics
url https://doi.org/10.5281/zenodo.14950184