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June 22, 2026
‘In Science, You Are Your Own Boss
Polina Nasledskova is interested in identifying gaps in linguistics and topics that have been overlooked by other researchers. In an interview for the  Young Scientists of HSE University project, she spoke about rare ordinal numerals in Nakh-Daghestanian languages, the benefits of knitting for concentration, and the beauty of the Patriarshy Bridge.
June 19, 2026
HSE Researchers Determine Which Internet Users Are More Likely to Fact-Check
Researchers at HSE University examined the strategies employed by Russian internet users to verify unreliable information and the factors that motivate them to do so. The study found that more than half of users who encounter potentially false information online attempt to verify it by locating the original source. The likelihood of fact-checking is influenced by several factors, including age, place of residence, social status, information literacy skills, and the use of AI. The findings have been published in Monitoring of Public Opinion: Economic and Social Changes.
June 5, 2026
'Im Used to Producing Distilled Knowledge'
Ivan Rubachev works in a HSE University laboratory established jointly with Yandex Research, where he focuses on machine learning with tabular data. In this interview with the HSE Young Scientists project, he discusses why following a vibe can be better than goal-setting, explains the concept of the Neural Turing Machine, and argues why withholding scientific knowledge is counterproductive.

 

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Нестационарные процессы при формировании пылевой плазмы у поверхности Фобоса

Письма в Журнал экспериментальной и теоретической физики. 2021. Т. 113. № 7. С. 440–445.
Голубь А. П., Popel S.

The formation of a dusty plasma in photoelectric and electrostatic processes in the near-surface layer over the illuminated part of the moon of Mars Phobos is discussed. The parameters characterizing trajectories of dust particles have been determined within a physicomathematical model for the self-consistent description of densities of photoelectrons and dust particles over the illuminated part of the surface of Phobos. It has been shown that the damping of oscillations of a dust particle over the surface of Phobos is related to variations of its charge in agreement with concepts of anomalous dissipation caused by processes associated with variation of charges of dust particles. It has been demonstrated that the damping time of their oscillations for most of the dust particles rising over the surface of Phobos because of photoelectric and electrostatic processes is longer than the daytime; i.e., the nonstationarity of the dusty plasma system over the illuminated part of the surface of Phobos is manifested during almost the entire day on it. The maximum rising altitude and charge that can be reached by dust particles with different sizes have been determined. The typical densities of dust particles and photoelectrons over Phobos have been estimated. To obtain more definite data on the parameters of the dusty plasma system near Phobos, more detailed information on the properties of its soil is necessary; it is expected that this information will be obtained in future space missions.

Research target: Physics
Priority areas: engineering science
Language: Russian
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Keywords: космические миссииPhobosФобосspace missionsпылевая плазмаНестационарные процессыdusty plasmasNonstationary Processes
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