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News
June 5, 2026
Neural Network Maps as a Method for Constructing Mathematical Models
Scientists from HSE University–Nizhny Novgorod and the Institute of Physics Belgrade, Serbia, are jointly exploring the application of machine learning techniques and neural networks to the study of nonlinear dynamics. Natalya Stankevich, Leading Research Fellow at the Laboratory of Topological Methods in Dynamics of the Faculty of Informatics, Mathematics, and Computer Science at HSE University–Nizhny Novgorod, spoke to the HSE News Service about this international project.
June 5, 2026
‘In the Age of Technology, It Is Interesting to Look into the Past and Think about What We Can Take from It
Polina Tabakova decided to apply for a Philology degree at HSE in Nizhny Novgorod because she grew up in Mari El and did not want to move far away from the Russian forests. In an interview for the Young Scientists of HSE University project, she spoke about the genre of the campus novel, the existential drama of Kolobok, and a blackout version of Eugene Onegin.
June 5, 2026
HSE Scientists Develop Method to Compress Large Language Models Without Losing Quality
Researchers from the AI and Digital Science Institute at the HSE Faculty of Computer Science have developed a new compression method for large language models such as GPT and LLaMA that reduces their size by 25–36% without additional training or significant loss of accuracy. This is the first approach to use mathematical transformations—specifically, rotations of model weights—to make models more amenable to compression with structured matrices. The study results have been published in ACL Findings 2025. The code is available on GitHub.

 

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Экспериментальные исследования и математическое моделирование работы алмазных детекторов ионизирующих излучений

Приборы и техника эксперимента. 2017. № 3. С. 37–42.
Gladchenkov E., Zakharchenko K. V., Ибрагимов Р. Ф., Kaperko A., Kolyubin V., Kulagin V., Nedosekin P., Тюрин Е. М.

The mathematical model of ionizing radiation monitor based on diamond detectors has been developed. Experimental studies of the monitor have been carried out. The model of the monitor has been verified and optimized using the results of these studies. The model is shown to provide for the estimation of the output data of the monitor accurate to better than 10%. The results obtained would be used in recovering the cosmic radiation spectra by the monitor output data.

Research target: Electronics and Electrical Engineering Physics
Priority areas: engineering science
Language: Russian
Full text
Keywords: numerical simulationчисленное моделированиеradiation environment monitoringкосмическое излучениеdiamond detectorалмазный детекторcosmic radiationрадиационная обстановка
Publication based on the results of:
Создание модулей контроля параметров потоков космических излучений на базе широкозонных полупроводниковых сенсоров для перспективных транспортных космических систем с длительным сроком функционирования (2014)
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