Cite

[1] Slon, V., Mafessoni, F., Vernot, B. “The genome of the offspring of a Neanderthal mother and a Denisovan father”, Nature 561, pp. 113 – 116, 2018. DOI: 10.1038/s41586-018-0455-x613084530135579 Open DOISearch in Google Scholar

[2] Meyen, S., Sokolov, E., Shreyder, Yu. “Classical and non-classical biology. Phenomenon of Lyubishchev”, Chemistry and life 6, pp. 29 – 35, 1978. Search in Google Scholar

[3] Meyen, S. “The path to a new synthesis, or where do homological series lead?”, Knowledge is power 8, pp. 20 – 22, 1972. Search in Google Scholar

[4] Lorenz, K. “Analogy as a source of Knowledge”, Nobel Lecture, December 12, 1973. Austrian Academy of Sciences Institute of Comparative Behaviour Research, Altenberg, Austria., pp. 97 – 107, 1973. Available at: https://www.nobelprize.org/uploads/2018/06/lorenz-lecture.pdf [Accessed: date (10.05.22)] Search in Google Scholar

[5] Urmantsev, Yu. “Symmetry of nature and the nature of symmetry”, Moscow, Mysl, 1974, 229 p. Search in Google Scholar

[6] Rozova, S. “Classification problem in modern science”, Novosibirsk, Nauka, 1986, 224 p. Search in Google Scholar

[7] Lima de Faria, A. “Evolution without selection”, Мoscow, Mir, 1991, 455 p., Available at: https://link.springer.com/article/10.1007/BF00047247 [Accessed: date (14.04.22)] Search in Google Scholar

[8] Kopylov, I. “The evolution of nature as the development of electromechanical energy converters”, Izvestiya VUZov “Elektromekhanika” № 1 – 2, pp. 3 – 8, 1994. Search in Google Scholar

[9] Ebeling, V., Engel, A., Faystel, R. “Physics of evolutionary processes”, Synergistic approach., Moscow, Editorial URSS, 2001, 328 p. Search in Google Scholar

[10] Khaken, G. “Information and self-organization”, Macroscopic approach to complex systems., Мoscow, KomKniga, 2005, 248 p., Search in Google Scholar

[11] Urmantsev, Yu. “Evolutionism, or the general theory of the development of systems of nature, society and thinking”, Moscow, Knizhnyi dom «Librocom», 2009, 240 p. Search in Google Scholar

[12] Imyanitov, N. “Repetitions in evolution”, Philosophy and Society. Edition 3, pp. 78 – 97, 2009. Search in Google Scholar

[13] Polovinkin, A. “The laws of the structure and development of technology“, Volhograd, 1985, 202 p. Search in Google Scholar

[14] Balashov, E. “Evolutionary synthesis of systems”, Moscow, Radio i sviaz, 1985, 328 p. Search in Google Scholar

[15] Kudrin, B. “Introduction into technology”, Tomsk, 1991, 384 p. Search in Google Scholar

[16] Timchenko, A., Rodionov, A. “Fundamentals of informatics of system design of objects of new technology”, Кyiv, Naukova dumka, 1999, 152 p. Search in Google Scholar

[17] Knyazeva, E., Kurdyumov, S. “Laws of evolution and self-organization of complex systems”, Мoscow, Nauka, 1994, 236 p. Search in Google Scholar

[18] Bryukhovich, E. “Haeckel’s biogenetic law and its role in revealing the mechanism of retransmission of natural laws in the process of creation and evolution of computer technology. Part. 2.”, Mathematical machines and systems 4, pp. 169–180, 2010. Search in Google Scholar

[19] Spirov, A. “From evolutionary computing to meme evolution: some general trends”, Moscow yearbook of works from social science disciplines. Collection of scientific works., Ed. 8, Мoscow, pp. 243 – 255, 2018. Search in Google Scholar

[20] Shynkarenko, V. “Fundamentals of the theory of evolution of electromechanical systems”, Kyiv, Naukova dumka, 2002, 288 p., Available at: https://science.kpi.ua/konkpidr-2005/monografiya-osnovi-teoriyi-evolyutsiyi-elektromehanichnih-sistem-avtorshinkarenko-v-f/ [Accessed: date (21.10.22)] Search in Google Scholar

[21] Ahmad, S., Al-Adsani, Omid Beik. “Multiphase Hybrid Electric Machines”, Applications for Electrified Powertrains, Verlag: Springer International Publishing, 2021, 226 р., ISBN: 303080434810.1007/978-3-030-80435-0 Search in Google Scholar

[22] Wardach, M., Palka, R., Paplicki, P., Prajzendanc, P., Zarebski, T. “Modern Hybrid Excited Electric Machines”, Energies 13(22), 5910, 2020. DOI: 10.3390/en13225910 Open DOISearch in Google Scholar

[23] Padovec, Z., Sedlacek, R., Ruzicka, M., Ruzicka, P. “Analysis of Nechanical Properties of the “Bearing Part Based on Polished Samples”, Strojnícky časopis – Journal of Mechanical Engineering 67(2), pp. 85 – 90, 2017. DOI: 10.1515/scjme-2017-0021 Open DOISearch in Google Scholar

[24] Lunze, J. “What Is a Hybrid System?”, Modelling, Analysis, and Design of Hybrid Systems. Book series 279, pp. 3 – 14, Springer, 2002. Available at: https://link.springer.com/chapter/10.1007/3-540-45426-8_1 [Accessed: date (22.10.22)]10.1007/3-540-45426-8_1 Search in Google Scholar

[25] Shynkarenko, V., Shymanska A. “Dictionary of structural and genetic electromechanics”, Кyiv, NTUU «KPI», 2015, 112 p., Available at: https://ela.kpi.ua/handle/123456789/38693 [Accessed: date (23.10.22)] Search in Google Scholar

[26] Inge-Vechtomov, S. “The search for the periodic system in evolution”, First hand science, book 3, №2, pp. 20 – 25, 2004. Search in Google Scholar

[27] Shynkarenko, V. “About the nature of structural parallelisms in the technical evolution of electromechanical energy converters”, Electromechanical and energy saving systems 1, pp. 8 – 22, 2018. Available at: http://ir.stu.cn.ua/123456789/21213. Accessed: date (9.04.22)]10.30929/2072-2052.2018.1.41.8-22 Search in Google Scholar

[28] Shynkarenko, V. “Isomorphisms of generating systems (on the example of electromagnetic and numerical)”, Electromechanical and energy-saving systems 1, pp. 46 – 55, 2019. DOI: 10.30929/2072-2052.2019.1.45.46-55 Open DOISearch in Google Scholar

[29] Shynkarenko, V., Makki, A., Kotliarova, V., Shymanska, A., Krasovskyi, P. “Genetic organization and evolution of electromechanical objects with adaptive geometry of active zone”, Advances in Science, Technology and Engineering Systems 5(5), pp. 512 – 525, 2020. DOI: 10.25046/aj050564 Open DOISearch in Google Scholar

[30] Shynkarenko, V., Makki, A., Kotliarova, V., Shymanska, A. “Modular Principle in the Structural organization and Evolution of Electromechanical Objects”, Proceedings of the International Conference on Modern Electrical and Energy Systems, MEES, pp. 162 – 165, 2019. DOI: 10.1109/MEES.2019.8896446 Open DOISearch in Google Scholar

[31] Shynkarenko V., Kuznietsov Y., Gaidaienko J., Oliynyk K. “The Operability Analysis of Spindle-Motors Hybrid Electromechanical Systems”, 13 th Anniversary International scientific Conference «Unitech’13», 22 – 23 November 2013. Gabrovo, Bulgaria. Vol. III, pp. 268 – 272, 2013. Search in Google Scholar

[32] Shynkarenko, V., Makki, A., Kotliarova, V., Shymanska, A. “Genetic Synthesis of Electromechanical Objects of the Modular Type”, Proceedings of the International Conference on Modern Electrical and Energy Systems, MEES 2019, pp. 166 – 169, 2019. DOI: 10.1109/MEES.2019.8896596 Open DOISearch in Google Scholar

[33] Laithwaite, Е. A “History of Linear Electric Motors”, Macmillan International Higher Education, 1987, 389 p.10.1007/978-1-349-08296-4 Search in Google Scholar

[34] Shynkarenko, V., Shvedchikova, I., Kotlyarova, V. “Evolutionary Experiments in Genetic Electromechanics”, 13 th Anniversary International scientific Conference «Unitech’13», 22 – 23 November 2013. Gabrovo, Bulgaria. Vol. III, pp. 289 – 294, 2013. Search in Google Scholar

[35] Shynkarenko V., Kuznetsov Y. Interdisciplinary Approach to Modeling and Synthesis of difficult Technical Systems”, Journal of the Technical University of Gabrovo 52, pp. 24 – 28, 2016. Search in Google Scholar

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Engineering, Mechanical Engineering, Fundamentals of Mechanical Engineering, Mechanics