Перегляд за автором "Shekhovtsova, V."
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Публікація Analysis of the problems of humanization of education in Ukraine(2013) Sazhko, G.; Shekhovtsova, V.; Шеховцова, В. І.In recent years it has become particularly clear that the education system of Ukraine did not justify the hopes the training of specialists internationally competitive labor market, and the ability to restructure public life reorganization of production, preservation of culture and national culture, the environment, law and order. Scientific research in the field of philosophy, social psychology, pedagogy, ascertain the reduced quality of human phenomenon, reducing his moral stability, capacity for survival, creativity, cultural arrangement of his own life. The way forward is seen as one - this humanistic orientation of education, the revival of spirituality and moral perfection.Публікація Aspects of Human-Centered Design Application in Control Information Systems(ХНУРЕ, 2020) Shekhovtsova, V.; Veretelnikov, D.; Lebediev, V.; Шеховцова, В. І.Principles, approaches and methodology o f Human-Centered Design, set out in the ISO 9241-210 standard, give recommendations to developers according to the planning and implementation o f information systems with interactive components. Analysis o f the proposed rules and actions revealed the missing aspects, which, according to the authors, are essential for minimizing the influence o f the human factor in information management systems.Публікація Development of a spatial-dynamical model of the structure of toxic cyanobacteria clusters for biosecurity purposes(2018) Шеховцова, В. І.; Vysotska, O.; Georgiyants, M.; Nosov, K.; Balym, Yu.; Pecherska, A.; Porvan, A.; Pavlov, S.; Shekhovtsova, V.; Klochko, T.; Solodovnikov, A.We have devised a spatialdynamic model that describes the structure of clusters of toxic cyanobacteria over large water areas. The application of the constructed model has been demonstrated in order to identify the structure of a cluster in digital photographs. The character of bioproductive processes that define the risk of accumulation of toxic microorganisms is determined by a series of parameters that can be measured remotely using aerospace methods (taking photographs). The proposed model, based on a digital image, makes it possible to restore the spatialdynamic pattern of clusters by determining the state of bioproductive processes in different parts of the cluster. Information about such states is of great importance in order to optimize measures for eliminating the threat of toxicity.