318 research outputs found

    Psychological and pedagogical support for students’ adaptation to learning activity in high science school

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    © 2016 by iSER, International Society of Educational Research.The relevance of the study is due to the importance of psychological and pedagogical support for students in university that would prevent difficulties in learning activities and increase adaptive capacity through the development of relevant personal traits. Therefore, this article is aimed at solving the problem of arranging psychological and pedagogical support for first-year students’ entry to a new system of educational activity. The key approach to the study of this problem is the system-activity approach, which allows to introduce training activities as a collaborative work with one of its members (the student) gaining experience and others creating facilities for it. The article describes the developed and implemented model of psychological and pedagogical support for student adaptation to educational activity in high school with a key role of tutoring program. The empirical data on the results of program approbation are also under consideration. With the help of system-activity approach the courses "Training activities technology" and "Life science" were adopted, the content of which is revealed in this article. The article may be useful to teachers and tutors, working within the framework of vocational training of students

    Fundamentals of sports training athlete-athlete

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    Sport training currently is an important component of the system of preparation of the sportsman. It is a pedagogical process, which is based on application of physical exercises to improve functional capabilities of the athleteСпортивная тренировка в настоящее время является важной составной частью системы подготовки спортсмена. Она представляет собой педагогический процесс, который основан на использовании физических упражнений с целью совершенствования функциональных возможностей спортсмен

    Methodological aspects of the use of dry components of chicken eggs for feeding children with phenylketonuria

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    Currently, one of the most important tasks facing science and production is the creation of functional product technologies for use in different diets of the population in order to preserve and improve health, as well as reduce the risks and consequences of various diseases, including hereditary ones, such as phenylketonuria (PKU). The All-Russian Research Institute of Starch Products develops technologies for the production of low-protein starch-based products/semi-products enriched with functional ingredients and intended for therapeutic nutrition of patients with PKU. As part of the pilot production, the production of these products is organized. Purpose of work:to justify the possibility of using dry components of chicken eggs (melange, protein, yolk) to enrich low-protein starch products (noodles, vermichel, «spider») intended for feeding children over 3 years old with phenylketonuria;evaluate organoleptic properties and efficiency of low-protein starch products enriched in hypophenylalanine diet of patients with phenylketonuria older than 3 years

    Studying the structure and adhesion strength of thermal barrier coating

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    The structure and adhesive strength of thermal barrier coatings produced by successive deposition of layers is studied. The coating is applied in three layers: I) a diffusion aluminosilicide coating that provides protection against high temperature oxidation and corrosion, with a thickness of 50μm; ii) a metal sublayer providing a smooth transition from a metal coating to a ceramic one, with a thickness of 100 to 120μm; iii) a ceramic layer decreasing the temperature of the blades during operation, with a thickness of 70 to 100μm. The total coating thickness ranges from 0.17 to 0.27mm. It is shown that the second and third layers deposited by plasma spraying are quite dense, the porosity being less than 5 vol%. During tensile tests carried out on an Instron testing machine, the failure of glued samples was always detected in the adhesive joint. The adhesive strength of the applied epoxy-based adhesive was 12MPa; it can be stated that the adhesive strength of the coating is higher than 12MPa. © 2019 Author(s)

    КОНЦЕПЦІЯ МОБІЛЬНОЇ ЛАБОРАТОРІЇ КОМПЛЕКСНОЇ ОЦІНКИ ТА ПРОГНОЗУВАННЯ НАДЗВИЧАЙНИХ СИТУАЦІЙ

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    The concept of elaboration of mobile laboratories of integrated assessment and forecasting of emergency situations was developed. They provide operational radiation control in routine and emergency situations, remote and contact monitoring of concentration of harmful chemical contaminants in the atmosphere, soil, water, food, forage, etc. High technology equipment in theselaboratories enables to carry out assessment of the integral man-made and natural risks, to anticipate arising and development of emergency situations promptly, to forecast development and implementation of priority measures, to mitigate and eliminate potential effects of accidents and disasters.Розроблена концепція зі створення мобільних лабораторій комплексної оцінки та прогнозування надзвичайних ситуацій, які забезпечать оперативний радіаційний контроль в штатних і аварійних ситуаціях, дистанційний і контактний контроль концентрацій шкідливих хімічних домішок в атмосфері, ґрунті, воді, продуктах харчування, кормах та ін. Наукомістка апаратура таких лабораторій дає можливість проводити інтегральну оцінку техногенних і природних ризиків, прогнозувати виникнення та розвиток надзвичайних ситуацій, оперативно здійснювати розробку і впровадження першочергових заходів з ліквідації та пом'якшення можливих наслідків аварій і катастроф

    Ni-Based Catalysts for the Hydrotreatment of Fast Pyrolysis Oil

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    Catalytic hydrotreatment is an attractive technology to convert fast pyrolysis oil to stabilized oil products for co processing in conventional crude oil refinery units. We report here the use of novel bimetallic NiCu- and NiPd-based (Picula) catalysts characterized by a high Ni content (29-58 wt %) and prepared using a sol gel method with SiO2, La2O3, kaolin, ZrO2, and combinations thereof as the support, for the catalytic hydrotreatment of fast pyrolysis oil. The experiments were performed in a batch autoclave (1 h at 150 degrees C, 3 h at 350 degrees C, and 200 bar initial pressure at 350 degrees C). The catalyst with the highest nickel loading (58 wt % Ni) promoted with Pd (0.7 wt %) was the most active, yielding oil products with improved properties compared to the crude pyrolysis oil (lower oxygen content, higher solubility in hydrocarbons, and less tendency for coke formation). For all Picula catalysts, except the ZrO2-based catalysts, methane formation was considerably lower than for Ru/C, the benchmark catalyst in catalytic hydrotreatment of fast pyrolysis oil. To anticipate possible catalyst deactivation at very long times on stream, catalyst regeneration studies were performed using thermogravimetric analysis. Analyses of the regenerated catalysts (X-ray diffraction, high-resolution transmission electron microscopy, and Brunauer Emmett Teller surface area) showed the occurrence of active metal agglomeration.</p

    Хімія

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    The book presents the material for the study of fundamental discipline "Chemistry" in the undergraduate course. The manual provides concise theoretical material and includes many laboratory works. For the students of specialty "Oil, gas and condensate" and specialty "Management and administration of companies, trade and exchange activities". The book can be used during training of foreign students.Навчальний посібник складено для вивчення фундаментальної дисципліни "Хімія" в курсі бакалаврату. У посібнику стисло наведено теоретичний матеріал, є багато лабораторних робіт. Розраховано на студентів спеціальності "Добування нафти, газу та конденсату" і спеціальності "Управління та адміністрування підприємств, торгова та біржова діяльність". Оскільки посібник викладено англійською мовою, він може використовуватись у ході навчання студентів-іноземців

    Solid-state synthesis and characterization of ferromagnetic Mn5Ge3 nanoclusters in GeO/Mn thin films

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    Mn5Ge3 films are promising materials for spintronic applications due to their high spin polarization and a Curie temperature above room temperature. However, non-magnetic elements such as oxygen, carbon and nitrogen may unpredictably change the structural and magnetic properties of Mn5Ge3 films. Here, we use the solid-state reaction between Mn and GeO thin films to describe the synthesis and the structural and magnetic characterization of Mn5Ge3(Mn5Ge3Oy)-GeO2(GeOx) nanocomposite materials. Our results show that the synthesis of these nanocomposites starts at 180°С when the GeO decomposes into elemental germanium and oxygen and the resulting Ge atoms immediately migrate into the Mn layer to form ferromagnetic Mn5Ge3 nanoclusters. At the same time the oxygen atoms take part in the synthesis of GeOx and GeO2 oxides and also migrate into the Mn5Ge3 lattice to form Mn5Ge3Oy Nowotny nanoclusters. Magnetic analysis assumes the general nature of the Curie temperature increase in carbon-doped Mn5Ge3Cx and Mn5Ge3Oy films. Our findings prove that not only carbon, but oxygen may contribute to the increase of the saturation magnetization and Curie temperature of Mn5Ge3-based nanostructures
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