Identifying the subject in the strategy for scientific and technological development of the Russian federation

2016 ◽  
Vol 86 (6) ◽  
pp. 441-447
Author(s):  
V. I. Starodubov ◽  
N. G. Kurakova
2019 ◽  
Vol 13 (2) ◽  
pp. 32-42 ◽  
Author(s):  
E. B. Lenchuk ◽  
V. I. Filatov

Topic. The subject of the article is the analysis of approaches to overcoming the stagnation of scientific and technological development of the Russian economy in the context of the emerging system of strategic planning in the Russian Federation.Purpose. The authors set the following main tasks. First — based on the assessment of the current situation in the field of scientific and technological development of the Russian Federation — to analyse the tools used for strategic planning of scientific and technological development for their internal connectivity. Second — based on analysis mentioned above — to form the directions of further development and improvement of the formed system of strategic planning of scientific and technological development in the RF.Methods. The logistic analysis of the developed documents of strategic planning of scientific and technological development of the Russian Federation on the subject of their substantial conjugacy and compliance with the logic and requirements of the Federal law No. 172 “On strategic planning in the Russian Federation” made it possible to formulate proposals for its further development and improvement.Results. The analysis showed that Federal law No. 172 “On strategic planning in the Russian Federation” forms the conceptual basis for strategic planning of scientific and technological development in the RF. Further development and improvement of the formed system of strategic planning of scientific and technological development of the RF should take place in the direction of strengthening the substantive interface of strategic planning documents (strategies and programs) at the Federal level with similar documents at the industry and regional levels. To this end, it is necessary, first, to finalize, in the context of the tasks of scientific and technological development, the methodological requirements for the documents of the sectoral and regional level and, secondly, to ensure the logic (sequence) of the development of such documents, allowing to really ensuring their meaningful internal relationship.


2019 ◽  
Vol 5 (2) ◽  
pp. 101-113 ◽  
Author(s):  
V. I. Starodubov ◽  
F. A. Kurakov

One of the seven target indicators of the National Science Project (NSP) is “The place of the Russian Federation by share in the total number of articles in the areas defined by the priorities of scientific and technological development in publications indexed in international databases”. The purpose of this study was to assess the basic value of this indicator for disciplines related to priority areas, according to the Strategy of scientific and technological development of the Russian Federation. The volumes of publication flows of the Russian Federation in 112 disciplines are compared with a similar indicator of countries ranked fifth in the number of publications in the subject area under consideration, indexed in the Web of Science Core Collection (WoS CC). A 5–10 fold lag of the Russian Federation was recorded for the most part of the priority areas identified by the passport of the NSP.


2019 ◽  
Vol 27 (3/4) ◽  
pp. 187-192 ◽  
Author(s):  
Aleksei V. Bogoviz ◽  
Svetlana V. Lobova ◽  
Alexander N. Alekseev ◽  
Vadim N. Prokofiev ◽  
Irina V. Gimelshtein

Purpose The purpose of this paper is to substantiate the perspectives and to develop recommendations for managing digital modernization of regional markets of educational services in the conditions of formation of Industry 4.0 by the example of modern Russia. Design/methodology/approach The methodological basis of the research consists of the hypothetical and deductive method. The offered hypothesis of the necessity for decentralization of managing digital modernization of regional markets of educational services in the conditions of formation of Industry 4.0 is verified with the help of a complex of methods of economic statistics (econometrics), namely, the method of regression analysis and analysis of variation. The research objects are regions of modern Russia that are peculiar for the highest level of scientific and technological development (top 15 of 83 regions at the beginning of 2019), which shows their largest progress in formation of Industry 4.0. The information and empirical basis of the research consists of the materials of the report on human development in the Russian Federation “Human and Innovations”, prepared by the Analytical Center for the Government of the Russian Federation (values of the education index are taken from it), and analytical materials of the rating “Level of Development of Science and Technologies in Regions of Russia” as a result of 2018, prepared by Ria rating (values of the index of scientific and technological development are taken from it). Findings It is determined that regional specifics are not sufficiently considered during management of modernization of regional markets of educational services in the conditions of formation of Industry 4.0 in modern Russia. This reduces efficiency of managing digital modernization of regional markets of educational services and leads to the fact that these markets do not perform their function of infrastructural provision of Industry 4.0, slowing down the process of its formation. Originality/value The necessity for managing modernization of the markets of educational services in the conditions of formation of Industry 4.0 at the regional level, in view of specifics of the regional economy, is substantiated. For this, a conceptual model and recommendations for its practical application in modern Russia are offered.


2019 ◽  
Vol 7 (6) ◽  
pp. 37-41
Author(s):  
Natal'ya Bizyaeva ◽  
N. Konstantinova

The article substantiates the need for a scientific and practical orientation in organizing modern education, which meets the challenges of the time and the requirements for ensuring the competitiveness of our country, outlined in the “Forecast of the Scientific and Technological Development of the Russian Federation for the Period until 2030”. The possibilities of binary lessons in elementary school, integrating the content of instruction in mathematics and computer science, are revealed. Examples of educational tasks that are aimed at developing the skills of primary schoolchildren to put into practice the acquired theoretical knowledge are given.


Author(s):  
Magomed Sh. Mintsaev ◽  
Irina E. Ilina ◽  
Svetlana L. Parfenova ◽  
Vladislava N. Dolgova ◽  
Elena N. Zharova ◽  
...  

Introduction. The implementation of priorities of the scientific and technological development of the Russian Federation involves an assessment of the trends in the development of human, scientific, technological and innovation potential within the framework of these directions. In modern conditions of transformation of science and technology into key factors of Russian development, it is necessary to provide the country’s economy with human resources capable of withstanding “big challenges”, but at this stage there is a shortage of highly qualified specialists in many key industries that can offer a new scientific result, taking into account the prospects for its application. The purpose of the article is to develop an approach to assess the human, scientific, technological and innovative potentials in the context of priorities in the scientific and technological development of the Russian Federation and its validation using the example of three priorities. Materials and Methods. The materials of this study draw on Rosstat and FSMNO ; Rospatent; Web of Science and Scopus. The object of research is to assess human, scientific, technological and innovative potential in the context of priorities in scientific and technological development of the Russian Federation. In the course of the research, a multiplicative model of the impact of the availability of human, scientific, technological and innovative capacity on labour intensity was developed. In the process of research, the following research and analysis methods were used: comparison, induction and deduction method, generalisation method, chain substitution method, logical structure study, system analysis, and special methods of statistical, comparative analysis. In the methodological plan, we used the system and process appro aches in the basis of the study. Results. The study revealed that the labour intensity in 2016 for all three priorities of the scientific and technological revolution of the Russian Federation has increased. Therefore, according to the priorities of the scientific and technological revolution of the Russian Federation, the availability of scientific, technological and innovative potential is not sufficient, which leads to a decrease in the reverse indicator of labour intensity - labour productivity in the markets within the framework of these priorities. Concerning the impact on labour intensity in all three priorities, one observes: the growth of “collaborations” in fundamental research, the applied effectiveness of scientific activity, “collaborations” of applied research; reduction in citations from scientific articles, low patent activity of engineering and technical workers, technological demand for patents. Therefore, against the background of emerging collaborative activity of actors in the process of research and development and the growth of the applied effectiveness of scientific activity, there is a low level of orientation of scientific and scientific-technical results to c ommercialisation. Discussion and Conclusions. On the basis of the multiplicative model developed by the authors for assessing the impact of the provision of human, scientific, technological and innovative capacities on labor intensity, it was tested on the example of the three priorities of the scientific and technological development of the Russian Federation (a, b, c). It was revealed that the labour intensity in 2016, according to the priorities of the Scientific and Technical Council of the Russian Federation, increased, and the availability of scientific, technological and innovative potential is not sufficient, which leads to a decrease in the inverse measure of labour intensity - labour productivity in high-tech markets within the framework of these priorities. Concerning the impact on labour intensity for all three priorities, it was revealed: the growth of “collaborations” of fundamental research, the applied effectiveness of scientific activity, “collaborations” of applied research; reduction in citations from scientific articles, low patent activity of engineering and technical workers, technological demand for patents. It was also revealed that against the background of the emerging collaborative activity of actors in the process of research and development and the growth of the applied effectiveness of scientific activity, there is a low level of orientation of scientific and scientific-technical results to commercialisation.


Author(s):  
T. B. Timofeeva ◽  
E. A. Ozdoeva

The current Strategy of Innovative Development of the Russian Federation for the period up to 2020 and the Strategy of Scientific and Technological Development of the Russian Federation determine the goals, priorities and objectives of the state innovation policy and scientific and technological development of the country. A significant role is given to areas that allow us to obtain scientific and technical results that are the basis for increasing the innovative level of production and consolidating the country's position in the foreign market. Among the priority areas is the aviation industry, namely the sector of aircraft engine construction. The creation of aircraft engines is currently one of the most science-intensive and high-tech tasks of the domestic aircraft industry. However, the analysis of the current state of implementation of programms in this area shows that the problems of their functioning and development are not always solved taking into account a wide range of emerging risks, the negative impact of which can lead to significant financial losses. To develop effective methods for assessing and minimizing risks, it is necessary to first analyze and classify them. In the article, based on the analysis, a system of classification of risks arising during development aircraft engines. The results obtained will allow us to give a preliminary qualitative assessment of the negative events that occur at various stages of the development of aircraft engines.


Author(s):  
Nikolay M. Tyukavkin ◽  
Yulia V. Matveeva

In the Strategy of scientific and technological development of the Russian Federation, the main goal is to ensure the competitiveness and independence of the state by forming an effective system of the most complete application and development of the intellectual potential of the state. The main directions in the work of the Government of the Russian Federation, for the period up to 2024, is the formation of conditions for the entry of the Russian Federation into the top five leading countries in the field of R D, represented by the priorities of scientific and technological development of the state, determined by this Strategy.These areas are represented by the Program, which is the main mechanism for implementing the Strategy. It is aimed at increasing the socio-economic effect of applying the results of scientific research and intellectual activity, significantly increasing the efficiency of using budget funds and extra-budgetary sources to finance R D, by switching to the qualified customer model. The Strategy also provides for measures to develop the level of capitalization of the educational potential of the population to fulfill the tasks of technical modernization of industrial production, development of entrepreneurial structures of all types, attracting talents, social mobility, ensuring the required rates of economic growth, as well as the quality of life of society


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