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dc.contributor.authorAbrukov V. S.ru
dc.contributor.authorAnufrieva D. A.ru
dc.contributor.authorSmirnov A. V.ru
dc.date.accessioned2026-01-23T11:29:00Z-
dc.date.available2026-01-23T11:29:00Z-
dc.date.issued2025-
dc.identifierRU\НТБ СГАУ\582225ru
dc.identifier.citationAbrukov, V. S. Nanomaterials genome / V. S. Abrukov, D. A. Anufrieva, A. V. Smirnov // Информационные технологии и нанотехнологии (ИТНТ-2025) : материалы XI междунар. конф. и молодеж. шк. (г. Самарканд, Узбекистан, 7-9 окт. 2025 г.) / М-во науки и высш. образования Рос. Федерации, Самар. нац. исслед. ун-т им. С. П. Королева (Самар. ун-т). - Самара : Изд-во Самар. ун-та, 2025. - С. 060042.ru
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dc.description.abstractThis Materials Genome is the analytical and calculation tools that: conta in all relations hips between all variables oft he object; allow to сalculate the values of one part of variables through other; allow t solve direct and inverse problems; allow to predict the characteristics of an object that have not been investigated yet; allow to predict technology parameters to ob tain an object with desired characteristicsю. This paper presents a methodology and techniques of a creation of the Nanomaterials Genome (NG). The example of the creation of the NG for the nanofilms of linear-chain carbon (sp 1 state) with embedded into nanof ilms various atoms by means of Data Science methods (artificial neural networks, etc) is presented. The se nanofilms were invented in Chuvash State University, by means of unique technology protected by patent. The nanofilms can be of great interest for solid-state electronics, photovoltaic elements, sensors, etc. All steps of the creation of this type of NG and illustrations are preru
dc.description.firstpage060042ru
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dc.format.mimetypeTextru
dc.language.isorusru
dc.publisherPublisherru
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dc.subjectкомпонентru
dc.subjectстилизацияru
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dc.titleNanomaterials genomeru
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dc.typeType Textru
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