dc.description |
1. Aulin, V., Lysenko S., Hrynkiv, A., Velykodnyi, D., Chernai, A., Lukashuk, A.:
Regularities of dynamics of change in tribotechnical characteristics of coatings formed by
tribotechnologies of restoration. Problems of Tribology 91(1), 73–80 (2019).
doi:10.31891/2079-1372-2019-91-1-73-80
2. Beltz, P.: Simulation improves operator training: PC-based simulation cuts operator training
costs while yielding superior results as compared to other training methods. InTech
Magazine Jan-Feb. https://www.isa.org/standards-and-publications/isapublications/intech-magazine/2012/february/system-integration-simulation-improvesoperator-training/ (2012). Accessed 26 December 2018
3. Bilousova, L.I., Kolgatin, O.H., Kolgatina, L.S.: Computer Simulation as a Method of
Learning Research in Computational Mathematics. In: Ermolayev, V., Mallet, F.,
Yakovyna, V., Kharchenko, V., Kobets, V., Korniłowicz, A., Kravtsov, H., Nikitchenko,
M., Semerikov, S., Spivakovsky, A. (eds.) Proceedings of the 15th International Conference
on ICT in Education, Research and Industrial Applications. Integration, Harmonization and
Knowledge Transfer (ICTERI, 2019), Kherson, Ukraine, June 12-15 2019, vol. II:
Workshops. CEUR Workshop Proceedings 2393, 880–894. http://ceur-ws.org/Vol2393/paper_209.pdf (2019). Accessed 30 Jun 2019
4. Byrd, A.P., Stone, R.T., Anderson, R.G.: The Use of Virtual Welding Simulators to
Evaluate Experienced Welders. Welding journal 94(12), 389–395 (2015) 5. Chen, S.J., Huang, N., Liu, Y.K., Zhang, Y.M.: Machine-assisted travel speed control in
manual welding torch operation. International Journal of Advanced Manufacturing
Technology 76(5–8), 1371–1381 (2015). doi:10.1007/s00170-014-6310-9
6. Chernetskyi, I.S., Pashchenko, Ye.Yu., Atamas, A.I., Shapovalov, Ye.B., Shapovalov,
V.B., Bulhakov, I.V.: Vykorystannia informatsiinykh instrumentiv dlia stukturyzatsii ta
vizualizatsii naukovykh znan pry provedenni poperednoho doslidzhennia (The use of
information tools for structuring and visualization of scientific knowledge during the
preliminary investigation). Scientific notes of the Junior Academy of Sciences of Ukraine,
Series: Education 7, 20–28 (2015)
7. Demirbilek, M., Koç, D.: Using Computer Simulations and Games in Engineering
Education: Views from the Field. In: Ermolayev, V., Mallet, F., Yakovyna, V., Kharchenko,
V., Kobets, V., Korniłowicz, A., Kravtsov, H., Nikitchenko, M., Semerikov, S.,
Spivakovsky, A. (eds.) Proceedings of the 15th International Conference on ICT in
Education, Research and Industrial Applications. Integration, Harmonization and
Knowledge Transfer (ICTERI, 2019), Kherson, Ukraine, June 12-15 2019, vol. II:
Workshops. CEUR Workshop Proceedings 2393, 944–951. http://ceur-ws.org/Vol2393/paper_345.pdf (2019). Accessed 30 Jun 2019
8. Fedoreiko, V.S., Horbatiuk, R.M., Pavkh, I.I., Rutylo, M.I.: Imitatsiine kompiuterne
modeliuvannia yak efektyvnyi zasib pidhotovky maibutnikh uchyteliv tekhnolohii ta
inzheneriv-pedahohiv (Simulative computer modeling as means of preparing teachers most
effective technology engineers and educators). Naukovi zapysky Ternopilskoho
natsionalnoho pedahohichnoho universytetu imeni Volodymyra Hnatiuka, Ser. Pedahohika
3, 327–333 (2011)
9. Fehling, C.D., Müller, A., Aehnelt, M.: Enhancing Vocational Training with Augmented
Reality. In: Proceedings of the 16th International Conference on Knowledge Technologies
and Data-driven Business, Graz, October 18-19, 2016
10. Fronius: Virtual Welding. https://www.fronius.com/en/welding-technology/ourexpertise/welding-education (2018). Accessed 20 December 2018
11. Fronius: Virtual Welding: welder training of the future.
https://www.fronius.com/en/welding-technology/our-expertise/welding-education/virtualwelding (2018). Accessed 20 December 2018
12. Gaba, D.M.: The future vision of simulation in health care. Quality and Safety in Health
Care 13, i2–i10 (2004). doi:10.1136/qhc.13.suppl_1.i2
13. Heinz, M., Büttner, S., Röcker, C.: Exploring training modes for industrial augmented
reality learning. In: PETRA '19: Proceedings of the 12th ACM International Conference on
PErvasive Technologies Related to Assistive Environments, June 2019, pp. 398–401
(2019). doi:10.1145/3316782.3322753
14. Kiv, A.E., Merzlykin, O.V., Modlo, Ye.O., Nechypurenko, P.P., Topolova, I.Yu.: The
overview of software for computer simulations in profile physics learning. 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, 352–362. http://ceur-ws.org/Vol-2433/paper23.pdf (2019). Accessed 10 Sep 2019
15. Komarova, O.V., Azaryan, A.A.: Computer Simulation of Biological Processes at the High
School. In: Kiv, A.E., Soloviev, V.N. (eds.) Proceedings of the 1st International Workshop
on Augmented Reality in Education (AREdu 2018), Kryvyi Rih, Ukraine, October 2, 2018.
CEUR Workshop Proceedings 2257, 24–32. http://ceur-ws.org/Vol-2257/paper03.pdf
(2018). Accessed 30 Nov 2018
16. Lavrentieva, O.O., Rybalko, L.M., Tsys, O.O., Uchitel, A.D.: Theoretical and methodical
aspects of the organization of students' independent study activities together with the use of ICT and tools. 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, 102–125. http://ceur-ws.org/Vol-2433/paper06.pdf
(2019). Accessed 10 Sep 2019
17. Lavrentieva, O.O.: Metodyka orhanizatsii stymuliatsiinoho navchannia v protsesi
pidhotovky kvalifikovanykh robitnykiv (The methodic of organizing simulation training in
preparing the qualified staffs). Paper presented at the All-Ukrainian Scientific Forum
“Adaptive Management Systems in Education”, Kharkiv, 24-28 January, 2019
18. Lvov, M.S., Popova, H.V.: Simulation technologies of virtual reality usage
in the training of future ship navigators. In: Kiv, A.E., Shyshkina, M.P. (eds.) Proceedings
of the 2nd International Workshop on Augmented Reality in Education (AREdu 2019),
Kryvyi Rih, Ukraine, March 22, 2019, CEUR-WS.org, online (2020, in press)
19. Markova, O., Semerikov, S., Popel, M.: CoCalc as a Learning Tool for Neural Network
Simulation in the Special Course “Foundations of Mathematic Informatics”. In: Ermolayev,
V., Suárez-Figueroa, M.C., Yakovyna, V., Kharchenko, V., Kobets, V., Kravtsov, H.,
Peschanenko, V., Prytula, Ya., Nikitchenko, M., Spivakovsky A. (eds.) Proceedings of the
14th International Conference on ICT in Education, Research and Industrial Applications.
Integration, Harmonization and Knowledge Transfer (ICTERI, 2018), Kyiv, Ukraine, 14-
17 May 2018, vol. II: Workshops. CEUR Workshop Proceedings 2104, 338–403.
http://ceur-ws.org/Vol-2104/paper_204.pdf (2018). Accessed 30 Nov 2018
20. Michaud, R.: Augmented Reality Technology: The Future is Here!
http://www.fabricatingandmetalworking.com/2017/02/augmented-reality-technologyfuture/ (2017). Accessed 20 December 2018
21. Miller LiveArc Welding Performance Managment System for GMAW & FCAW
applications. https://www.millerwelds.com/equipment/training-solutions/trainingequipment/livearc-welding-performance-management-system-m00803 (2018). Accessed
26 December 2018
22. MIMBUS: Welding simulator for the vocational training WAVE NG.
https://www.mimbus.com/en/portfolio/wave-ng-en/#products (2017). Accessed 20
December 2018
23. Modlo, Ye.O., Semerikov, S.O., Bondarevskyi, S.L., Tolmachev, S.T., Markova, O.M.,
Nechypurenko, P.P.: Methods of using mobile Internet devices in the formation of the
general scientific component of bachelor in electromechanics competency in modeling of
technical objects. In: Kiv, A.E., Shyshkina, M.P. (eds.) Proceedings of the 2nd International
Workshop on Augmented Reality in Education (AREdu 2019), Kryvyi Rih, Ukraine, March
22, 2019, CEUR-WS.org, online (2020, in press)
24. Modlo, Ye.O., Semerikov, S.O., Nechypurenko, P.P., Bondarevskyi, S.L., Bondarevska,
O.M., Tolmachev, S.T.: The use of mobile Internet devices in the formation of ICT
component of bachelors in electromechanics competency in modeling of technical objects.
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, 413–428. http://ceur-ws.org/Vol-2433/paper28.pdf (2019).
Accessed 10 Sep 2019
25. Modlo, Ye.O., Semerikov, S.O.: Xcos on Web as a promising learning tool for Bachelor’s
of Electromechanics modeling of technical objects. In: Semerikov, S.O., Shyshkina, M.P.
(eds.) Proceedings of the 5th Workshop on Cloud Technologies in Education (CTE 2017),
Kryvyi Rih, Ukraine, April 28, 2017. CEUR Workshop Proceedings 2168, 34–41.
http://ceur-ws.org/Vol-2168/paper6.pdf (2018). Accessed 21 Mar 2019 26. Mueller, D., Ferreira, J.M.: MARVEL: A mixed-reality learning environment for vocational
training in mechatronics. In: Proceedings of the Technology Enhanced Learning
International Conference (TEL 03). https://repositorio-aberto.up.pt/handle/10216/84622
(2003). Accessed 28 Nov 2019
27. Pazdrii, V., Banschykov, P., Kosyk, V., Tropina, I., Hryshchenko, O.: Simulation System
in Educational and Career Guidance State Policy of Ukraine. In: Ermolayev, V., Mallet, F.,
Yakovyna, V., Kharchenko, V., Kobets, V., Korniłowicz, A., Kravtsov, H., Nikitchenko,
M., Semerikov, S., Spivakovsky, A. (eds.) Proceedings of the 15th International Conference
on ICT in Education, Research and Industrial Applications. Integration, Harmonization and
Knowledge Transfer (ICTERI, 2019), Kherson, Ukraine, June 12-15 2019, vol. II:
Workshops. CEUR Workshop Proceedings 2393, 935–943. http://ceur-ws.org/Vol2393/paper_428.pdf (2019). Accessed 30 Jun 2019
28. Rose, F.D., Brooks, B.M., Attree, E.A.: Virtual reality in vocational training of people with
learning disabilities. In: Sharkey, P., Cesarani, A., Pugnetti, L., Rizzo, A. (eds.) Proceedings
of the 3rd International Conference on Disability, Virtual Reality and Associated
Technologies, Alghero, Sardinia, Italy, 23–25 September, 2000, pp. 129–135. The
University of Reading, Reading (2000)
29. Rybalko, L., Lavrentieva, O., Voloshko, L., Rozhenko, I.: Innovative Technologies
Application in Education as a Condition for Education for Society Sustainable
Development. International Journal of Engineering and Technology 7(4.8), 671–674
(2018). doi:10.14419/ijet.v7i4.8.27333
30. Schmudlach, K., Hornecker, E., Ernst, H., Bruns, F.W.: Bridging reality and virtuality in
vocational training. In: CHI EA '00: CHI '00 Extended Abstracts on Human Factors in
Computing Systems, April 2000, pp. 137–138 (2000). doi:10.1145/633292.633370
31. Seabery: What – Soldamatic. http://www.soldamatic.com/what/#at (2019). Accessed 21
Mar 2019
32. Semerikov, S.O., Teplytskyi, I.O., Yechkalo, Yu.V., Kiv, A.E.: Computer Simulation of
Neural Networks Using Spreadsheets: The Dawn of the Age of Camelot. In: Kiv, A.E.,
Soloviev, V.N. (eds.) Proceedings of the 1st International Workshop on Augmented Reality
in Education (AREdu 2018), Kryvyi Rih, Ukraine, October 2, 2018. CEUR Workshop
Proceedings 2257, 122–147. http://ceur-ws.org/Vol-2257/paper14.pdf (2018). Accessed 30
Nov 2018
33. Slipukhina, I.A., Olkhovyk, V.V., Kurchev, O.O., Kapranov, V.D.: Development of
education and information portal of physics academic course: web design features.
Information Technologies and Learning Tools 64(2), 221–233 (2018).
doi:10.33407/itlt.v64i2.1781
34. Svarochnyj trenazher 3D virtual'noj real'nosti WeldPlus (WeldPlus 3D Welding Simulator).
http://www.smart2tech.ru/prinadlezhnosti/svarochnyj-trenazher-weldplus (2013).
Accessed 20 December 2018
35. Svistunov, A.A., Gorshkov, M.D (eds.) Simulyacionnoe obuchenie v medicine (Simulation
training in medicine). Izdatel'stvo Pervogo MGMU imeni I.M. Sechenova, Moscow (2013)
36. Syrovatskyi, O.V., Semerikov, S.O., Modlo, Ye.O., Yechkalo, Yu.V., Zelinska, S.O.:
Augmented reality software design for educational purposes. 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, 193–225. http://ceur-ws.org/Vol2292/paper20.pdf (2018). Accessed 21 Mar 2019 37. Tech-Labs: VRTEX® Transport™ Virtual Reality Welding Training Simulator.
https://tech-labs.com/products/vrtex-mobile-virtual-reality-arc-welding-trainer (2018).
Accessed 20 December 2018
38. Teplytskyi, O.I., Teplytskyi, I.O., Semerikov, S.O., Soloviev, V.N.: Training future
teachers in natural sciences and mathematics by means of computer simulation: a social
constructivist approach. Vydavnychyi viddil DVNZ “Kryvorizkyi natsionalnyi
universytet”, Kryvyi Rih (2015)
39. Tkachuk, V.V., Yechkalo, Yu.V., Markova, O.M.: Augmented reality in education of
students with special educational needs. In: Semerikov, S.O., Shyshkina, M.P. (eds.)
Proceedings of the 5th Workshop on Cloud Technologies in Education (CTE 2017), Kryvyi
Rih, Ukraine, April 28, 2017. CEUR Workshop Proceedings 2168, 66–71. http://ceurws.org/Vol-2168/paper9.pdf (2018). Accessed 21 Mar 2019
40. Virtual Logic Systems. http://virtuallogicsys.com/ (2014). Accessed 28 Nov 2019
41. Vyznacheno, de tsoho roku vidkryiut 50 NPTs, na yaki vydilyly 100 mln hryven – nakaz
MON (It is determined where 50 NPCs will open this year, for which 100 million UAH
were allocated – the order of the Ministry of Education and Science).
https://mon.gov.ua/ua/news/viznacheno-de-cogo-roku-vidkriyut-50-npc-na-yaki-vidilili100-mln-griven-nakaz-mon (2018). Accessed 21 March 2018
42. Who We Are | Amatrol. https://amatrol.com/ (2020). Accessed 10 Jan 2020
43. Zhao, H., Liu, Y., Zhang, L., Shi, J., Li, T.: Application of Virtual Reality Technology in
High Vocational Education. Applied Mechanics and Materials 556–562, 6716-6719 (2014).
doi:10.4028/www.scientific.net/AMM.556-562.6716 |
|