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Назва: The Dawn of Software Engineering Education
Автори: Стрюк, Андрій Миколайович
Семеріков, Сергій Олексійович
Ключові слова: software engineering
professional training
software
specialist training model
standard of higher education
Дата публікації: 9-лют-2020
Видавництво: Arnold E. Kiv, Serhiy O. Semerikov, Vladimir N. Soloviev, Andrii M. Striuk
Бібліографічний опис: Striuk A. M. The Dawn of Software Engineering Education [Electronic resource] / Andrii M. Striuk, Serhiy O. Semerikov // Computer Science & Software Engineering : Proceedings of the 2nd Student Workshop (CS&SE@SW 2019), Kryvyi Rih, Ukraine, November 29, 2019 / Edited by : Arnold E. Kiv, Serhiy O. Semerikov, Vladimir N. Soloviev, Andrii M. Striuk. – P. 35-57. – (CEUR Workshop Proceedings (CEUR-WS.org), Vol. 2546). – Access mode : http://ceur-ws.org/Vol-2546/paper02.pdf
Короткий огляд (реферат): Designing a mobile-oriented environment for professional and practical training requires determining the stable (fundamental) and mobile (technological) components of its content and determining the appropriate model for specialist training. In order to determine the ratio of fundamental and technological in the content of software engineers’ training, a retrospective analysis of the first model of training software engineers developed in the early 1970s was carried out and its compliance with the current state of software engineering development as a field of knowledge and a new the standard of higher education in Ukraine, specialty 121 “Software Engineering”. It is determined that the consistency and scalability inherent in the historically first training program are largely consistent with the ideas of evolutionary software design. An analysis of its content also provided an opportunity to identify the links between the training for software engineers and training for computer science, computer engineering, cybersecurity, information systems and technologies. It has been established that the fundamental core of software engineers’ training should ensure that students achieve such leading learning outcomes: to know and put into practice the fundamental concepts, paradigms and basic principles of the functioning of language, instrumental and computational tools for software engineering; know and apply the appropriate mathematical concepts, domain methods, system and object-oriented analysis and mathematical modeling for software development; put into practice the software tools for domain analysis, design, testing, visualization, measurement and documentation of software. It is shown that the formation of the relevant competencies of future software engineers must be carried out in the training of all disciplines of professional and practical training.
Опис: 1. Bauer, F.L. (ed.). Software Engineering: An Advanced Course. Lecture Notes in Computer Science, vol. 30) (Formerly published 1973 as Lecture Notes in Economics and Mathematical Systems, vol. 81) Springer-Verlag, Berlin, Heidelberg, New York (1975). doi:10.1007/3-540-07168-7 2. Buxton, J.N., Randell, B. (eds.): Software Engineering Techniques: Report on a Conference sponsored by the NATO Science Committee, Rome, Italy, 27th to 31st October 1969. Scientific Affairs Division, NATO, Brussels (1970) 3. Grosch, H.R.J.: High Speed Arithmetic: The Digital Computer as a Research Tool. Journal of the Optical Society of America 43(4), 306–310 (1953). doi: 10.1364/JOSA.43.000306 4. Markova, O.M., Semerikov, S.O., Striuk, A.M., Shalatska, H.M., Nechypurenko, P.P., Tron, V.V.: Implementation of cloud service models in training of future information technology specialists. In: Kiv, A.E., Soloviev, V.N. (eds.) Proceedings of the 6th Workshop on Cloud Technologies in Education (CTE 2018), Kryvyi Rih, Ukraine, December 21, 2018. CEUR Workshop Proceedings 2433, 499–515. http://ceur-ws.org/Vol2433/paper34.pdf (2019). Accessed 10 Sep 2019 5. Markova, O.M., Semerikov, S.O., Striuk, A.M.: The cloud technologies of learning: origin. Information Technologies and Learning Tools 46(2), 29–44 (2015). doi:10.33407/itlt.v46i2.1234 6. Naur, P., Randell, B. (eds.): Software Engineering: Report on a Conference sponsored by the NATO Science Committee, Garmisch, Germany, 7th to 11th October 1968. Scientific Affairs Division, NATO, Brussels (1968) 7. Randell, B.: Fifty Years of Software Engineering - or - The View from Garmisch. arXiv:1805.02742 [cs.SE]. https://arxiv.org/abs/1805.02742 (2018). Accessed 21 Mar 2019 8. Standart vyshchoi osvity Ukrainy: pershyi (bakalavrskyi) riven, haluz znan 12 – Informatsiini tekhnolohii, spetsialnist 121 – Inzheneriia prohramnoho zabezpechennia (Higher education standard of Ukraine: first (bachelor) level, field of knowledge 12 – Information technologies, specialty 121 – Software engineering). https://mon.gov.ua/storage/app/media/vishcha-osvita/zatverdzeni%20standarty/12/21/121- inzheneriya-programnogo-zabezpechennya-bakalavr.pdf (2018). Accessed 25 Oct 2019 9. Striuk, A.M.: Software engineering: first 50 years of formation and development. In: Kiv, A.E., Semerikov, S.O., Soloviev, V.N., Striuk, A.M. (eds.) Proceedings of the 1st Student Workshop on Computer Science & Software Engineering (CS&SE@SW 2018), Kryvyi Rih, Ukraine, November 30, 2018. CEUR Workshop Proceedings 2292, 12–36. http://ceurws.org/Vol-2292/paper01.pdf (2018). Accessed 21 Mar 2019
URI (Уніфікований ідентифікатор ресурсу): http://ceur-ws.org/Vol-2546/paper02.pdf
http://elibrary.kdpu.edu.ua/xmlui/handle/123456789/3671
https://doi.org/10.31812/123456789/3671
ISSN: 1613-0073
Розташовується у зібраннях:Кафедра інформатики та прикладної математики

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