2010
DOI: 10.1016/j.jtbi.2010.05.021
|View full text |Cite
|
Sign up to set email alerts
|

Water: A medium where dissipative structures are produced by a coherent dynamics

Abstract: The Belousov-Zhabotinsky phenomenon is analyzed in a framework where the dynamics of dissipative structures outlined by Prigogine is implemented through the collective dynamics produced in liquid water by Quantum Electrodynamics, which has received recently some experimental support. A mechanism allowing the appearance of self-produced oscillations is suggested.

Help me understand this report

Search citation statements

Order By: Relevance

Paper Sections

Select...
1
1
1
1

Citation Types

3
67
0
1

Year Published

2010
2010
2017
2017

Publication Types

Select...
8

Relationship

1
7

Authors

Journals

citations
Cited by 81 publications
(71 citation statements)
references
References 19 publications
3
67
0
1
Order By: Relevance
“…In reference [20], the jump of electric potential existing on the interface between coherent and noncoherent water has been estimated to be in the interval 55 ÷ 120 mV, in good agreement with the observed values of electric potentials on cell membranes and on EZ water.…”
Section: Liquid Water Close To Surfacessupporting
confidence: 71%
See 2 more Smart Citations
“…In reference [20], the jump of electric potential existing on the interface between coherent and noncoherent water has been estimated to be in the interval 55 ÷ 120 mV, in good agreement with the observed values of electric potentials on cell membranes and on EZ water.…”
Section: Liquid Water Close To Surfacessupporting
confidence: 71%
“…The above theory applies to all molecular species. However, as shown in references [18][19][20], in the case of water the excited state involved in the coherent oscillation (12.06 eV) lies just below the ionization threshold of the molecule (12.60 eV). An oscillation of 12.06 eV corresponds to a water CD size of 0.1 microns.…”
Section: A Quantum Field Theoretical Description Of Liquid Watermentioning
confidence: 87%
See 1 more Smart Citation
“…First of all, we will evaluate the critical density for each excited level by using Equation (21). We will do that by introducing into Equation (21) the available experimental data on the oscillator strengths of water.…”
Section: Calculation Of Critical Density For Watermentioning
confidence: 99%
“…Desde su promulgación, la teoría de las estructuras disipativas ha demostrado un gran alcance, logrando actualmente dar soporte a varios marcos teóricos en ingeniería, medicina, psicología, agricultura y ciencias humanas (Ahn, 1998;Almendro y Weber, 2012;Deng et al, 2017;Marchettini et al, 2010;Pulselli et al, 2009;Shvartsev, 2009;Zhao et al, 2000), convirtién-dose en una importante referencia del sistema cientí-fico moderno (Zhan y Sheng, 1998).…”
Section: Parámetro Sigla Descripciónunclassified