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News
July 9, 2026
HSE Economists Use Search Queries to Forecast Birth Rates
Researchers from the HSE Faculty of Economic Sciences have shown that the accuracy of birth rate forecasts for Russia can be improved by almost 50% by incorporating the dynamics of online search queries related to pregnancy and childbirth into forecasting models. In the best-performing models, the forecasting error fell from 4.6% to 3.2%. The findings have been published in Populations and Economics.
July 8, 2026
HSE Researchers Discover Who Eats Out in Russia-And Why
Around one-third of Russians (31.3%) rarely eat out or buy ready-made meals. The core group of active consumers—those who eat out or purchase prepared food almost every day or several times a week—accounts for only about 9% of the population. These are the findings of a study conducted by the HSE Institute for Social Policy. According to the researchers eating out is no longer a marker of high social status in Russia.
July 8, 2026
HSE University and RREDA Join Forces to Support 2026 Renewable Energy of the Planet Competition
HSE University and the Russia Renewable Energy Development Association (RREDA) have signed a partnership and information cooperation agreement to support Renewable Energy of the Planet—2026, a national competition with international participation for students and early-career researchers. Applications are open on the competition's website until September 20, 2026.

 

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Induced electric conductivity in organic polymers

Beilstein Journal of Nanotechnology. 2022. Vol. 13. P. 1551–1557.
Arutyunov K., Gurskiy A., Artemov V., Vasiliev A., Yusupov A., Karamov D., Lachinov A.

Polydiphenylenephthalide (PDP) belongs to the class of carbocyclic organic electroactive polymers,
which exhibit electric conductive properties when an external electric field and/or mechanical stress is
applied. In this work, the transport properties of thin-film layered lead–PDP–lead structures were
experimentally studied in a wide temperature range. At sufficiently high temperatures, the current
voltage characteristics are satisfactorily described in terms of the injection model of currents limited
by the space charge. At temperatures below ~8 K, a number of samples exhibit features that can be
explained by the effect of induced superconductivity in a thin film of conducting polymer enclosed
between two massive superconductors (lead).

Research target: Electronics and Electrical Engineering Physics
Language: English
Full text
DOI
Text on another site
Keywords: superconductivityсверхпроводимостьтонкие пленкиthin filmspolymerquantum nanoelectronicsквантовая наноэлектроникаполимер
Publication based on the results of:
Квантовые эффекты в низкоразмерных гибридных наноструктурах (2022)
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