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Dabrowski M. In bk.: MED Report 2018: Building Trust: the Challenge of Peace and Stability in the Mediterranean. Milan: Italian Institute for International Political Studies (ISPI), 2018. Ch. 2.1. P. 86-89.
Добавлено: 23 ноября 2018
Глава
Alexander Gromoff, Bilinkis (Stavenko) J., Yaroslav Gorchakov. In bk.: Communications in Computer and Information Science. Vol. 1011: 8th International Workshop on Learning Technology for Education Challenges, LTEC 2019; Zamora; Spain. Springer, 2019. P. 45-57.
Добавлено: 28 сентября 2019
Глава
Ivanov S., Prokhorenkova L. In bk.: Proceedings of the 9th International Conference on Learning Representations (ICLR 2021). ICLR, 2021.. ICLR, 2021.
Добавлено: 2 августа 2021
Глава
Morozova V. In bk.: 70 Years of Modern Chinese State: the Proceedings of the Annual Conference of the Center for Political Studies and Forecasting IFES RAS. 2019. P. 264-273.
Добавлено: 27 августа 2020
Глава
Akhin M., Беляев М. А., Ицыксон В. М. In bk.: Present and Ulterior Software Engineering. Cham: Springer, 2017. P. 119-138.
Добавлено: 12 ноября 2018
Глава
Nikolay Arefyev, Zhikov V. In bk.: Proceedings of the 14th International Workshop on Semantic Evaluation (SemEval-2020). Association for Computational Linguistics, 2020. P. 171-179.
Добавлено: 7 декабря 2020
Глава
Smirnova V. In bk.: RE: Reflections and Explorations: A Forum for Deliberative Dialogue. Iss. 2. Virginia Tech Institute for Policy and Governance, 2017. P. 205-208.
Добавлено: 28 сентября 2018
Глава
Gasparyan D. In bk.: Rethinking Mamardashvili: Philosophical Perspectives, Analytical Insights. Brill, 2022.
Добавлено: 11 сентября 2021
Глава
Kanovich M., Ban Kirigin T., Nigam V. et al. In bk.: Lecture Notes in Computer Science. Computer Security – ESORICS 2013 18th European Symposium on Research in Computer Security, Egham, UK, September 9-13, 2013. Proceedings. Berlin: Springer, 2013. Ch. 18. P. 309-326.
Добавлено: 24 марта 2015
Глава
Kruglik Stanislav, Frolov A. In bk.: 2017 IEEE International Symposium on Information Theory (ISIT). IEEE, 2017. P. 1023-1027.
Добавлено: 26 октября 2018
Глава
Агиевич В. А., Гимранов Р. Д., Таратухин В. В. и др. В кн.: Promoting Business Process Management Excellence in Russia Proceedings and Report of the PropelleR 2012 Workshop held in Moscow, April 24 to 26, 2012. Т. 15. Мюнстер: European Research Center for Information Systems, 2013. С. 31-36.

Innovation is the realization of a creative idea being applied to an existing problem. This application may be either of a new idea or the adoption of an existing idea. As we can see some aspects of Enterprise Architecture development and other activities in large organizations may grow from supposed purely engineering tasks to real research problems. This is a soil for cooperation and co-innovation in research and development that may be of a great value for both science and industry.

Добавлено: 13 ноября 2013
Глава
Ivanov S. Y., Kalenkova A. A., van der Aalst W. In bk.: Proceedings of the BPM Demo Session 2015. Co-located with the 13th International Conference on Business Process Management (BPM 2015). Vol. 1418. Innsbruck: CEUR-WS.org, 2015. Ch. 8. P. 35-39.
Добавлено: 12 августа 2015
Глава
Kuznetsov S., Kanovich M., Scedrov A. In bk.: International Conference on Formal Grammar FG 2018: Formal Grammar 2018. Netherlands: Springer, 2018. P. 84-101.
Добавлено: 5 декабря 2018
Глава
Witte G. W. In bk.: Schreiben als Ereignis. Künste und Kulturen der Schrift. Vol. 23. Leiden; Boston; Paderborn: Wilhelm Fink Verlag, 2018. P. 35-57.
Добавлено: 30 октября 2020
Глава
Konopkina K., Arsalidou M. In bk.: 3rd Annual Skoltech - Mit Conference “Collaborative Solutions for Next Generation Education, Science and Technology” Skolkovo Institute of Science and Technology, Moscow, October 15-16, 2018. M.: Skolkovo Institute of Science And Technology, 2018.

Mathematics is a core course in school curricula. Children begin formal mathematical training in preschool and continue training throughout school age years or longer as some adults use complex mathematics professionally. The brain correlates of arithmetic process have received extensive attention from neuroscientists. Parietal cortex contribution to mathematical processes is established and extensively discussed (Dehaene & Cohen, 1997; Dehaene et al., 2003). However, the parietal cortex alone cannot support mathematical cognition, as regions such as the frontal cortex are crucial even for basic numerical judgments. Many studies show that arithmetic processes engage a distributed set of areas that includes various regions in frontal, parietal, cingulate and insular cortices (Arsalidou and Taylor 2011; Sokolowski et al. 2017; Yeo et al. 2017; Arsalidou et al. 2018 for meta-analyses). Prefrontal cortex for instance plays key role in monitoring and manipulating of information (Christoff et al., 2009) and maintains processing relevant information to complete the task (Eslinger & Biddle, 2008). Critically, it remains unclear what common or distinct brain regions support problem solving in different basic mathematical operation such as addition, subtraction and multiplication. Our main research goal is to investigate brain response to mathematical problem solving in healthy adults using quantitative activation likelihood estimate (ALE) meta-analysis. Specifically, these meta-analyses investigate common and distinct brain regions that underlie processing of three mathematical operations: addition, subtraction, and multiplication. Moreover, we performed region of interest analyses in parietal, frontal, cingulate and insular cortices to compute laterality indices to examine hemispheric asymmetry in processing different types of mathematical operations. Data from 49 original articles,that tested a total of 896 participants (addition N = 386; subtraction N = 399; Multiplication N = 437) were analyzed Results indicated that parietal (BA 7, BA 40), prefrontal (BA 9) and insular cortices make up common regions, whereas distinct regions include the angular gyrus, basal ganglia and cerebellum. Theoretical and practical implications of these findings will be discussed.

Добавлено: 6 июня 2019
Глава
Pulvermuller F., Cappelle B., Shtyrov Y. In bk.: The Oxford Handbook of Construction Grammar. NY: Oxford University Press, 2013. Ch. 22. P. 397-416.
Добавлено: 21 марта 2015
Глава
Zaharov I. M., Likhanov M., Marakshina J. et al. In bk.: International Society for Intelligence Research (ISIR). 17th Annual meeting. St. Petersburg: 2016. P. 98-98.
Добавлено: 21 октября 2018
Глава
Alexey Nikolaev, Mikhail Batsyn. In bk.: Combinatorial Algorithms. 29th International Workshop, IWOCA 2018, Singapore, July 16–19, 2018. Lecture Notes in Computer Science. Vol. 10979. Springer, 2018. P. 311-322.
Добавлено: 23 октября 2018
Глава
Daniil Frumin, Irina Lomazova. In bk.: VPT 2014. Second International Workshop on Verification and Program Transformation. Vol. 28: EPiC Series. EasyChair, 2014. P. 19-35.
Nested Petri nets (NP-nets) is an extension of the Petri nets formalism within the “nets-within-nets” approach, when tokens in a marking are themselves Petri nets which have autonomous behavior and synchronize with the system net. The formalism of NP- nets allows modeling multi-level multi-agent systems with dynamic structure in a natural way. In this paper we define branching processes and unfoldings for conservative NP- nets, i.e. for NP-nets with a persistent set of agents. We prove that NP-nets unfoldings satisfy the fundamental property of unfoldings, and thus can be used for verification of conservative NP-nets in line with classical unfolding methods.
Добавлено: 10 августа 2014
Глава
Khotinskaya A. I. In bk.: Языки в современном мире: материалы X международной конференции. Сборник статей. M.: 2012. P. 465-474.

Доклад представляет собой попытку осмысления феномена создания бренда с лингво-культурологической точки зрения.

Добавлено: 15 марта 2013
Глава
Lianos I. In bk.: Brands, Competition Law and IP. Cambridge: Cambridge University Press, 2015.
Добавлено: 17 февраля 2015