Non-Reproducibility of LENR as a Possible Manifestation of a Variable Environment Within DKMM

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Auteur principal: Hrůza, Aleš
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Langue:anglais
Publié: Zenodo 2026
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author Hrůza, Aleš
author_facet Hrůza, Aleš
contents <p>Low-energy nuclear reactions (LENR), often referred to as cold fusion, represent<br>a long-standing controversial field at the boundary of experimental physics,<br>electrochemistry, and materials research. A characteristic feature of this field is<br>the tension between repeatedly reported anomalies - especially excess heat,<br>changes in isotopic composition, and occasional particle emissions - and the<br>current absence of robust, standardized reproducibility.<br>This article proposes a hypothetical interpretive framework based on the<br>Dynamic Cosmic Medium Model (DKMM). Its starting point is the possibility that<br>the non-reproducibility of observed phenomena does not necessarily imply the<br>non-existence of the effect, but may reflect the presence of a previously<br>unmonitored environmental variable. Within this framework, the probability of an<br>anomalous event is treated as a function not only of local laboratory parameters,<br>but also of the state of a broader dynamic environment, represented by the<br>schematic variable M(t,x).<br>The article treats this approach as phenomenological and programmatic. Its aim<br>is not to claim that LENR is already explained or technologically mastered, but to<br>show that DKMM offers a possible framework for interpreting the pulsed and<br>variable nature of reported results. On this basis, testable implications are<br>formulated for experimental methodology, statistical evaluation, and possible<br>future adaptive regulation of systems, should the existence of such an effect be<br>confirmed.</p>
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spellingShingle Non-Reproducibility of LENR as a Possible Manifestation of a Variable Environment Within DKMM
Hrůza, Aleš
cold fusion
LENR
dynamic cosmic medium
non-reproducibility
adaptive control
hidden variables
DCMM
theoretical physics
Hrůza Aleš
<p>Low-energy nuclear reactions (LENR), often referred to as cold fusion, represent<br>a long-standing controversial field at the boundary of experimental physics,<br>electrochemistry, and materials research. A characteristic feature of this field is<br>the tension between repeatedly reported anomalies - especially excess heat,<br>changes in isotopic composition, and occasional particle emissions - and the<br>current absence of robust, standardized reproducibility.<br>This article proposes a hypothetical interpretive framework based on the<br>Dynamic Cosmic Medium Model (DKMM). Its starting point is the possibility that<br>the non-reproducibility of observed phenomena does not necessarily imply the<br>non-existence of the effect, but may reflect the presence of a previously<br>unmonitored environmental variable. Within this framework, the probability of an<br>anomalous event is treated as a function not only of local laboratory parameters,<br>but also of the state of a broader dynamic environment, represented by the<br>schematic variable M(t,x).<br>The article treats this approach as phenomenological and programmatic. Its aim<br>is not to claim that LENR is already explained or technologically mastered, but to<br>show that DKMM offers a possible framework for interpreting the pulsed and<br>variable nature of reported results. On this basis, testable implications are<br>formulated for experimental methodology, statistical evaluation, and possible<br>future adaptive regulation of systems, should the existence of such an effect be<br>confirmed.</p>
title Non-Reproducibility of LENR as a Possible Manifestation of a Variable Environment Within DKMM
topic cold fusion
LENR
dynamic cosmic medium
non-reproducibility
adaptive control
hidden variables
DCMM
theoretical physics
Hrůza Aleš
url https://doi.org/10.5281/zenodo.19414544