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pp. 6238-6245 | Article Number: ijese.2016.460
Published Online: August 27, 2016
Abstract
The necessity of enhancement of the information component in the military engineer training is determined by the result of a comparative analysis of global and national engineering education standards. The purpose is to substantiate the effectiveness and relevance of applying information technology in the system of military engineer training of cadets. The methodological part of paper includes analyses of the problem information approach, system integrity and competency-based approaches. The article proves the effectiveness of using information technology in the system of military engineer training of cadets; describes the conditions and results of using information technology in the system of military engineer training of cadets. The obtained results can be used in the system of military engineer education, as well as in general in the system of military education when providing military engineer training of cadets.
Keywords: Information technology; military engineer training; military engineer; computer-generated simulation; military engineer training model
References
Bernstein, B. L., Bekki, J. M., Wilkins, K. G., Harrison, C. J. (2016). Analysis of instructional support elements for an online, educational simulation on active listening for women graduate students in science and engineering. Journal of Computing in Higher Education, 28(2), 136-171.
Dolzhenko, O.V., Shatunovsky, V.A. (1990). Modern methods and technology of education in a technical high school. Moscow: Science, 267 p.
Dvoretsky, S.I., Ignatyeva, N.V., Zhdanov, D.V., Mamontov, I.N. (1999). System of mathematical modeling, optimization and design of manufacturing processes and equipment of chemical production sites. Information Technologies, 11(1), 10-11.
Gladkov, A.V. (2006). Arrangement of professional training of cadets in a military-engineering higher educational institution. Nizhny Novgorod: Science, 321 p.
Gladkova, M.N. (2015). Competency-based approach to professional training of cadets. Relevant Problems of Modern Science and Education. All-Russian Society of Inventors and Innovators, Lipetsk, 73-75.
Gladkova, M.N., Gladkov, A.V. (2015). To the issue of the effectiveness of 3D-technology application in the process of professional military training of cadets. Relevant Problems of Modern Science and Education. All-Russian Society of Inventors and Innovators, Lipetsk, 75-76.
Ivanov, Y.M. (1983). System approach to the training of a generalist engineer. Kiev: Vishcha Shkola, 289 p.
Kazantsev, G.A., Perov, T.V. (2015). Ways to improve the process of formation of professional competence of specialists. International Journal of Applied and Basic Research, 12(7), 1309-1311.
Khizhnaya, A.B., Chervova, A.A. (2006). Pedagogical conditions for training graduate students in the continuous education system in the Higher School Teacher major. Nizhny Novgorod: VGIPU, 310 p.
Kutepov, M.M. (2003). Technology of formation of professional pedagogical abilities in future teachers of physical culture. Nizhny Novgorod: VGIPA, 390 p.
Markova, S.M., Gladkova, M.N. (2008). The implementation of the educational process in an orphanage. Nizhny Novgorod: Russian Humanitarian Science Foundation, 347 p.
Medvedeva, T.Y., Marik, V.B. (2015). Possible applications of information technology in the process of professional self-determination of the future professional of the arts and culture. Bulletin of the Mininsky University, 1(1), 1-4.
Scherer, P., Beswick, K., DeBlois, L., Healy, L., Opitz, E. M. (2016). Assistance of students with mathematical learning difficulties: how can research support practice? ZDM, 48(5), 633-649.
Shevchenko, S.M., Mukhina, M.V., Kutepova, L.I., Smirnova, Z.V. (2014). Designing of the basic educational bachelor program in the Service major: competence building approach. Online Journal Naukovedenie, 5(24), 182-186.
Smyth, L., Davila, F., Sloan, T., Rykers, E., Backwell, S., Jones, S. B. (2016). How science really works: the student experience of research-led education. Higher Education, 72(2), 191-207.
Sun, D., Looi, C.-K., Wu, L., Xie, W. (2016). The Innovative Immersion of Mobile Learning into a Science Curriculum in Singapore: an Exploratory Study. Research in Science Education, 46(4), 547-573.
Tai, J. H.-M., Canny, B. J., Haines, T. P., Molloy, E. K. (2016). The role of peer-assisted learning in building evaluative judgement: opportunities in clinical medical education. Advances in Health Sciences Education, 21(3), 659-676.
Tonello, M. (2016). Peer effects of non-native students on natives’ educational outcomes: mechanisms and evidence. Empirical Economics, 51(1), 383-414.
Vaganova, O.I. (2014). Interactive technologies in the preparation of the bachelor training. Bulletin of the Mininsky University, 6(1), 12-16.
Vaganova, O.I., Khizhnaya, A.V. (2016). Evaluation of educational outcomes of high school students in the MOODLE electronic environment. Society: Sociology, Psychology, Pedagogy, 1(1), 93-94.