Infra-quantum mechanics and critical examination of Bell's theorem on locality The principles of a revolution of epistemology revealed in the descriptions of microstates
Mioara Mugur-Schachter

TL;DR
This paper introduces Infra-quantum Mechanics (IQM), a qualitative epistemological framework that critiques Bell's theorem on locality, emphasizing the limitations of causality and the conceptualization of microstates independent of quantum formalism.
Contribution
It constructs IQM as a new epistemological approach to microstates, independent of quantum mathematics, and critically examines Bell's theorem within this framework.
Findings
IQM provides a qualitative description of microstates.
Bell's theorem on locality is interpreted as highlighting the impossibility of unifying Einstein's theories with QM.
Causality cannot be embedded into primordial representations of physical entities.
Abstract
This is an improved remake of a previous work submitted with the same title. An epistemologicalphysical, strictly qualitative discipline, IQM (infra-quantum mechanics), is constructed independently of the mathematical formalism of QM. IQM emerges under exclusively the constraints imposed by: the cognitive situation of a human being who decides to construct communicable and consensual knowledge on microstates; general requirements of human conceptualization. IMQ brings into evidence how the mathematical formalism of QM manages to signify. It explicates an integrated expression of a radically new type of descriptional form, transferred on the registering devices of macroscopic apparatuses and primordially statistical. IMQ is then considered globally and its relations with space, time, geometry, consensus, as well as with Einstein's theories, are specified. It appears that: there exists an…
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Taxonomy
TopicsQuantum Mechanics and Applications · Advanced Thermodynamics and Statistical Mechanics · Biofield Effects and Biophysics
