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  • Тонкие и сверхтонкие токовые слои: путешествие вглубь сингулярности Сыроватского
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September 18, 2026
When Pictures Hinder Understanding: Illustrations May Impede Learning of Abstract Ideas
Illustrations can help remember specific actions but do not always make abstract ideas easier to learn. Researchers from HSE University and Humboldt University compared how people learn from texts with different levels of abstractness. They found that participants remembered illustrations better and performed better on related tasks after reading a multimedia text about yoga asanas than after reading an abstract text about the Nash equilibrium. The findings could help improve the selection of illustrations for educational and informational materials. The study has been published in Learning and Instruction.
September 17, 2026
'I Wish That People Would Place Greater Trust in Science'
When Tatiana Eremicheva chose Fundamental and Computational Linguistics as her field of study, she thought it would be about learning languages. Instead, she discovered it was about helping people. In this interview for the HSE Young Scientists project, she discusses science as a way of understanding the world, billiards as a team-building activity, and why learning to read is not always as easy as it seems.
September 15, 2026
Immunity to Chaos: How Personal Resources Help Us Cope with the Challenges of a Turbulent World
International conflicts, crises and digital overload—the modern world puts our minds to the test every day. Traditional psychology often focuses on the consequences: anxiety, depression, and psychosomatic disorders. But what if we looked at the problem differently—through the lens of the resources that prevent us from breaking down? Psychological immunity is precisely this set of resources. Alena Zolotareva and her group, Psychological Immunity as a Resource for Positive Functioning, are developing an integrative model of this phenomenon, adapting diagnostic tools and preparing for large-scale empirical research. Why do psychologists need to collaborate with medical professionals, and how could their research transform preventive care in clinics and corporations?

 

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Тонкие и сверхтонкие токовые слои: путешествие вглубь сингулярности Сыроватского

Успехи физических наук. 2025. Т. 195. № 8. С. 807–834.
Зелёный Л. М., Малова Х. В., Григоренко Е. Е., Popov V., Царева О. О., Леоненко М. В.

We discuss the history of the study of thin (proton-thickness) current sheets in space plasma, which in the magnetohydrodynamic (MHD) framework were regarded as singular structures, i.e., infinitely thin MHD discontinuities. We discuss the special role of the work of S.I. Syrovatskii and his group in developing the theory and experimental studies of nonstationary thin current sheets in application to solar flares. Multisatellite scientific missions (Interball, Cluster, and MMS) have allowed looking inside the 'singularities' and evaluating the most complex processes of energy accumulation, transformation, and release within them. The accumulation of observational data from multisatellite space missions and the development of theoretical models of thin sheets allows their complex internal structure to be studied, including a hierarchical nesting of thinner current sheets inside wider ones. Even in a not very thin sheet, the plasma dynamics can no longer be described within the MHD approximation and requires the motion of electrons and ions to be described separately, at least. Describing ions is especially challenging because of their large Larmor radius (possibly exceeding the sheet thickness). The so-called quasiadiabatic theory of the motion of charged particles in the presence of sharp magnetic gradients plays a major role here. We reveal the key role of thin nested structures as triggers of explosive magnetic reconnection and conversion of the free energy of magnetic fields into the energy of waves and flows of accelerated particles. The relevant issue of observing and interpreting the properties of superthin (electron-scale) current sheets is covered in detail. Such sheets can be both part of multilevel nested structures and multiple independent nonstationary formations related to the magnetic energy dissipation processes in hot collisionless magnetospheric plasmas. The rapid evolution and decay of these sheets lead to the acceleration of electrons and the formation of new sheets, which also decay and give rise to new thin current structures; therefore, reconnection does occur on the electron scale, albeit in a nontrivial cascade mode. Several decades have passed since Syrovatskii constructed the MHD model of a dynamical current sheet, and the experience of improving both experimental techniques and theoretical tools that have allowed looking inside these amazing structures is instructive.

Research target: Computer Science Physics Mathematics Earth Sciences
Language: Russian
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Keywords: метастабильностьмагнитное пересоединениетонкие токовые слоибесстолкновительная космическая плазмасверхтонкие электронные слоиэлектронная тиринг модакаскадное пересоединение
Publication based on the results of:
Complex language and semantic models in artificial intelligence (2025)
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