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Relativity Theory and Paraquantum Logic—Part I: The Time and Space in the Paraquantum Logical Model
Full Text(PDF,
798KB) PP.957-971 DOI:
10.4236/jmp.2012.39126
Author(s)
João Inácio Da Silva Filho
KEYWORDS
Paraconsistent Logic; Paraquantum Logic; Classical Physic; Relativity Theory; Quantum Mechanics
Cite this paper
J.I Da Silva Filho, "Relativity Theory and Paraquantum Logic—Part I: The Time and Space in the Paraquantum Logical Model," Journal of Modern Physics, Vol. 3 No. 9, 2012, pp. 957-971. doi: 10.4236/jmp.2012.39126.
From fundamental concepts of the
Paraconsistent Annotated Logic with annotation of two values (PAL2v),
whose main feature is to be capable of treating contradictory
information, was created the Paraquantum Logic (PQL). The studies of the PQL are based on propagation of Paraquantum logical states ψ
in a representative Lattice of four vertices. Based in interpretations
that consider resulting information of measurements in physical systems,
are found two Paraquantum factors: the Paraquantum Gamma Factor γPΨ,
that has his action in the measurements of Observable Variables in the
Physical world and the Paraquantum Factor of quantization hΨ, which has his action in the Paraquantum World represented by the PQL Lattice. Correlation between γPΨ and hΨ
produces paraquantum equations for computation of the physical
quantities in real physical systems. In this work we present a study of
application of the PQL in resolution of phenomena of physical systems that involve concepts of the Relativity Theory. Initially the time t is
considered like an Observable Variable and the paraquantum analysis is
done with the same conditions assumed in the relativity theory for the
study of the time dilatation. After the time considerations, paraquantum equations are involved with the space-time and velocity
creating conditions for a relativistic/paraquantum analysis. In the
part II of this work a new approaches of the relativistic phenomena in
the Paraquantum Logical Model will show the correlation of these effects
with the Newtonian universe and with quantum mechanics.
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