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Influence of Low-Intensity Millimeter Electromagnetic Waves on the Viscosity and Density of Water-Salt Solutions

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Journal of Contemporary Physics (Armenian Academy of Sciences) Aims and scope

Abstract

The densities of a water-salt solution without and a water-salt solution with DNA were studied depending on the concentration of NaCl in the solution when they were irradiated with millimeter electromagnetic waves of non-thermal intensity, which are resonant for vibrations of hexagonal water molecular structures with a frequency of 50.3 GHz. Studies have shown that the density of solutions increases with irradiation. Density change due to irradiation is minimal for 0.9% NaCl solution (saline). Viscometric measurements have shown that irradiation (which leads to dehydration of DNA) does not lead to a noticeable change in the secondary and tertiary structure of DNA for a physiological solution of DNA.

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Correspondence to Yu. S. Babayan.

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Translated by V.M. Aroutiounian

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Kalantaryan, V.P., Ghazaryan, R.S., Babayan, Y.S. et al. Influence of Low-Intensity Millimeter Electromagnetic Waves on the Viscosity and Density of Water-Salt Solutions. J. Contemp. Phys. 57, 417–419 (2022). https://doi.org/10.1134/S1068337222040120

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  • DOI: https://doi.org/10.1134/S1068337222040120

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