Adıyaman Üniversitesi Kurumsal Arşivi

Cellular Gauge Symmetry and the Li Organization Principle: A Mathematical Addendum. Quantifying energetic dynamics in physical and biological systems through a simple geometric tool and geodetic curves

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dc.contributor.author Yurkin, Alexander
dc.contributor.author ve diğerleri...
dc.date.accessioned 2025-10-28T07:32:48Z
dc.date.available 2025-10-28T07:32:48Z
dc.date.issued 2017
dc.identifier.issn 0079-6107
dc.identifier.uri http://dspace.adiyaman.edu.tr:8080/xmlui/handle/20.500.12414/6811
dc.description.abstract The present Addendum complements the accompanying paper "Cellular Gauge Symmetry and the Li Organization Principle"; it illustrates a recently-developed geometrical physical model able to assess electronic movements and energetic paths in atomic shells. The model describes a multi-level system of circular, wavy and zigzag paths which can be projected onto a horizontal tape. This model ushers in a visual interpretation of the distribution of atomic electrons' energy levels and the corresponding quantum numbers through rather simple tools, such as compasses, rulers and straightforward calculations. Here we show how this geometrical model, with the due corrections, among them the use of geodetic curves, might be able to describe and quantify the structure and the temporal development of countless physical and biological systems, from Langevin equations for random paths, to symmetry breaks occurring ubiquitously in physical and biological phenomena, to the relationships among different frequencies of EEG electric spikes. Therefore, in our work we explore the possible association of binomial distribution and geodetic curves configuring a uniform approach for the research of natural phenomena, in biology, medicine or the neurosciences. tr
dc.language.iso en tr
dc.publisher Pergamon-Elsevier Science Ltd tr
dc.title Cellular Gauge Symmetry and the Li Organization Principle: A Mathematical Addendum. Quantifying energetic dynamics in physical and biological systems through a simple geometric tool and geodetic curves tr
dc.type Article tr
dc.contributor.department Russian Acad Sci, Moscow, Puschino, Russia tr
dc.identifier.endpage 161 tr
dc.identifier.issue 131 tr
dc.identifier.startpage 153 tr
dc.source.title PROGRESS IN BIOPHYSICS & MOLECULAR BIOLOGY tr


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