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Information × Registration Number 0214U002000, 0113U001395 , R & D reports Title Development of methods for measuring geometric, magnetic and electrical characteristics of nanobubbles, which are formed in the weak paramagnetic electrolytic solutions. popup.stage_title Head Krupa N., Registration Date 10-01-2014 Organization Institute of magnetism of NASU popup.description2 It covers the basic laws of research methodology characteristics nanobubbles in solutions and the reasons for their stability, and also describes a study design features continuous laser radiation scattering in dilute solutions of electrolyte and acid. This scheme allows for the spatial analysis of the changes in the characteristics of the scattering and depolarization of laser radiation transmitted or diffused electrolytic solution. It also allows us to study the dynamics of changes in these characteristics over time and space. The results of experimental studies of the influence of a constant magnetic field on the characteristics of laser light scattering in the area of etching iron wire. The results of experimental studies of the influence of a constant magnetic field on the potential difference arising from the etching of two iron wires in a magnetic field. The described algorithm computing the measurement data in the package MatLab. It is shown that under the influence of the magnetic field in the laser light scattering signal in the vicinity of the etching zones alternating signal having a frequency of several units of Hertz, and the potential difference in the signals on the two wires of iron in a magnetic field and an acid electrolyte solutions having variable frequency signals from several Hertz to tens of Hertz. Product Description popup.authors Крупа М.М. Скирта Ю.Б. Шарай І.В. popup.nrat_date 2020-04-02 Close
R & D report
Head: Krupa N.. Development of methods for measuring geometric, magnetic and electrical characteristics of nanobubbles, which are formed in the weak paramagnetic electrolytic solutions.. (popup.stage: ). Institute of magnetism of NASU. № 0214U002000
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Updated: 2026-03-19