The necessity of forming a project-technical competency of students in technical universities is due to the transition of the industrial areas to science-intensive technologies and the need for active involvement of professionals in their elaboration, implementation, and technical calculations. In this process, a key role should be given to a teacher of physical and mathematical disciplines, his readiness for the process of the students' project-technical competency formation in the study of these disciplines. In this regard, this article actualizes the problem of developing methodological support for professional development of physico-mathematical sciences teachers, contributing to their choice of optimal content and technologies for teaching mathematics and physics, aimed at forming the project-technical competency of technical university students. The article materials may be useful both for teachers of physico-mathematical disciplines, and for teacher education university students-future teachers of physico-mathematical disciplines.
The urgency of the need to develop a model of the systemic commitment of creative-project activity of technical university students to their self-development is due to the fact that the reserve possibilities of this type of teaching, research and professional activities from the perspective of the systemic commitment to self-development of the students' competitiveness remain insufficiently investigated in the theory and practice of teacher education. In this regard, the article presents the main components of the model of systemic commitment of the creative-project activity of technical university students to their selfdevelopment, as well as the results for its implementation in practice of higher professional education. The presented components of the model in the article (objectives, contents, methods, learning and educational environment)
The purpose of this article is to reveal the influence of the main areas of international educational integration on the processes of reforming the national professional education. The paper presents the main areas of the international educational integration at the level of statutory regulation, at the level of the goals and mission of higher professional education, at the level of organizational-structural changes, at the level of quality assurance of professional education, at the training content and management levels. The authors also proved the competitive advantages and disadvantages of the Russian market of educational services, the benefits and risks of reforming professional education under the conditions of international educational integration, economic and social effects of teaching foreign students in Russian universities. The article contents may be used by departments of international cooperation of professional educational institutions in the development of mechanisms for integrating Russian professional schools into a single educational space, as well as in the development of courses and teaching and learning aids for university heads on the issue of reforming professional education in the context of the Bologna and Copenhagen processes.
The most important component of the professional competence of an engineer is the synthesis of project and technical competences-project-technical competence, suggesting a set of special knowledge, skills and proficiencies, personal qualities necessary for the effective specialists' performance of their professional duties, in particular, for the successful implementation of engineering projects requiring technical calculations running, capabilities to effectively operate in real life, to get oriented in production situations, to adapt to changing conditions, to work in different teams. In this connection, the problem of selecting and structuring teaching content of physical and mathematical disciplines, aimed at the formation of project-technical competence of technical university students, is becoming relevant. The paper presents an algorithm for selecting and structuring the physical and mathematical disciplines teaching content, aimed at the formation of students' project-technical competence, involving a sequence of analytical and preparatory, organizational-substantive, procedural-methodological, as well as correction-implemental stages. The article submissions are of practical value to Mathematics and Physics teachers for selecting and structuring the content of these disciplines.
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