The article presents the issues of school environment expertise and discusses the possibilities and prospects of using digital tooling for its assessment in mass educational practice and scientific research. The proposed method of vector modeling of the environment of personality development allows determining the activity of the individual in mastering educational resources in various types of environments. This digital tooling allows school management teams and organizational consultants to conduct management and pedagogical analysis of the current status and complementarity of various system components of school environments with each other, as well as with the school’s mission, and implement their managerial and vocational design; to develop programs for the progression of school organizations based on environment methodology using expert project management technology; to carry out organizational and pedagogical consulting of schools taking into account the “built-in” nature of environments of various levels (the environment of the lesson, class, club, school, and educational complex).
Background. The neuropsychological approach suggests that differences in cognitive processes are associated with the variability of combinations of signs of partial dominance of certain brain structures, manifested in the form of individual laterality profiles. However, the problem of identifying and studying the relationship between interhemispheric asymmetry and cognitive functions in adolescents with a high level of intelligence remains not fully resolved, which determines the relevance of this study.The aim of the research was to describe the relationship between the type of profile of interhemispheric asymmetry with the characteristics of cognitive functions in adolescents with average and high levels of intelligence.Materials and methods. The sample included 52 people aged 12–15 years: 26 adolescents with high level intelligence (main group), 26 adolescents with an average level of intelligence (control group). The following research methods were used: Wechsler test (WISC-IV), method for studying the profile of interhemispheric asymmetry (Khomskaya E.D., Efimova I.V.); method “Correction test” by B. Bourdon; method ”Story on a given topic”.Results. The majority of adolescents with a high level of intelligence revealed the severity of right-lateral features, which were traced in the manual, auditory and visual spheres of sensorimotor asymmetry. At the same time, the severity of right-lateral and ambilateral features is accompanied by more pronounced indicators of the development of cognitive functions. Adolescents with the type of profile of interhemispheric asymmetry “Left-handed” were characterized by an insufficient level of attention stability and a reduced ability for detailed speech utterance, regardless of the level of intelligence.Conclusions. The data obtained show that the peculiarity of individual profiles of interhemispheric asymmetry determines the uneven development of a number of mental functions in adolescence and the different readiness of brain mechanisms to support various cognitive processes. We assume that the results of the work will expand the understanding of the role of interhemispheric asymmetry of the brain in the organization of cognitive functions in adolescents with a high level of intelligence.
The article presents the results of studying the personality characteristics of elderly scientists who have maintained scientific productivity for a long time. The problem that has to be solved and has got a huge scientific and practical significance is to find the psychological preconditions for the peak achievements of scientists and to define the social and psychological factors that contribute to maintaining the high productivity of elderly scientists for a long time.The aim of the study is to determine the key personality traits of famous elderly scientists at the stages of their professional development.Research methods. The presented data were obtained using the research interview “Life Values and Life Path”, developed by V.S. Mukhina. Empirical material was collected in the course of interviewing famous Russian scientists of older age (from 65 to 94 years old), involved in research activities and making a significant contribution to the development of the humanities and technical sciences. When forming the sample, we followed the logic of V.S. Mukhina, who interviewed older scientists who are the founders and leaders of well-known scientific schools, who have a doctorate in science, the academic title of professor, membership in the academy of the Russian Academy of Sciences, Russian Academy of Medical Sciences or Russian Academy of Education and continue active scientific work. Data on the peak achievements of older scientists were taken from the scientometric databases of the Russian Science Citation Index and the Russian State Library.Results. The data representing the peak achievements of the elderly scientists were taken from the scientometric databases and interpreted according to the provisions of differential and acmeological analysis for professional activities of scientists. The analysis of interviews, autobiographical descriptions and peak achievements of the elderly scientists allowed to reveal that the peak achievement (acme) is the joint result of psychological preconditions (personal traits of scientists, physical conditions) and social conditions of professional activity (social status of a scientist, belonging to a scientific school, availability of organizational and financial resources). The several productive periods, which are called within the acmeology field as “micro-acme”, can be indicated in the scientific work of elderly scientists throughout the period of their scientific activity. At the same time, the peak achievements of scientists as a rule are spaced in time with an optimal combination of preconditions and conditions for scientific creativity.
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