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Innovation in Study of Physical and Technical Measurements. Czech-Polish Cooperation of Universities / Innowacje Studiów Fizyczne I Techniczne Metody Pomiarowe. Czesko-Polska Współpraca Uniwersytetów

Abstract

In the Faculty of Science (University of Hradec Králové) the innovative program in chemistry for the study specialization Physico-technical Measurements and Computer Technology was developed. The innovation of chemistry filed study has been focused especially on increase in competitiveness and in graduates employment. Design of innovation enables graduates applying for the position of experts in physical measurements and informatics and at the same time they expand their competence in the service of the physico-chemical instrumentation in industrial ecology. Because Faculty of Science is not equipped yet in expensive instrumentation for nuclear spectrometry, cross-border cooperation with the Faculty of Natural and Technical Sciences (University of Opole) has been started. In the area of teaching about non-traditional energy sources the cross-border cooperation with the Department of Automation and Renewable Energy Sources, Faculty of Electrical Engineering (Czestochowa University of Technology) has been initiated. Well-developed system of cooperation with companies, which are equipped with the latest technology of environmental protection, was created. In the exchange system Polish students attended for practicing in these companies. The aim of the contribution is to describe one of the means of innovation of chemistry field study in the frame of bachelor study specialization oriented in physics and computer technology. We believe that the new approach will lead to increase in graduate competitiveness as well as to development of their motivation to study and better understanding of regulation principles of chemical processes and patterns.

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Chemical Innovation in Plant Nutrition in a Historical Continuum from Ancient Greece and Rome until Modern Times

. California Agriculture Experiment Station. 1950. https://archive.org/details/watercultureme3450hoag . [19] Górecki H, Chojnacka K, Dobrzański K. Innowacje chemiczne w rozwoju zrównoważonego rolnictwa. [Chemical innovations in the development of sustainable agriculture]. In: Misja nauk chemicznych. Marciniec B, editor. Poznań: Wyd. Nauka i Innowacje; 2012:169-192. http://sprzedajemy.pl/misja-nauk-chemicznych-bogdan-marciniec-nr42465737 . [20] Gondek K. J Elem. 2012;2/2012:231-245. DOI: 10.5601/jelem.2012.17.2.06. [21] Voisin A. Fertilizer Application

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Globafricalisation and Sustainable Development: Research and Researchers’ Assessments, ‘Publish or Perish’, Journal Impact Factor and Other Metrifications
Photocatalytic Coatings - Promising Way to Improve a Quality of Urban Building Surfaces

Abstract

With the increasing air pollutants particularly in the cities the deteriorating conditions of the buildings accelerate. One of the non-invasive and cheap promising ways how to prevent the buildings against the aged processes caused by biological pollutants or smog exhalation is the innovation of suitable photocatalytic coatings. This work focuses on the characterization of prepared photocatalytic nanocomposite TiO2-SiO2 system to be applied on the building objects in order to improve a quality of their surfaces. The structure and the texture characterization of prepared nanocomposite were determined by electron microscopy (SEM, TEM + EDS). The photocatalytic activity of the composite was determined considering the self-cleaning ability and the antibacterial activity. For self-cleaning characterization the methylene blue degradation was measured. These self-cleaning properties were tested on the various types of supports, which are commonly used in the building facades. To estimate antibacterial and biocidal activity the Gram-negative bacterium Escherichia coli and the gram-positive bacteria Staphylococcus aureus were used. Both methods were done according to standard ISO tests. Next to the laboratory testing the application of the composite under the real condition was implemented. There were treated parts of the concrete outside wall with the composite and after more than one year the colour changed analysis of the wall surface was characterized.

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Comparative study of Time Optimal Controller with PID Controller for a Continuous Stirred Tank Reactor

, Parekh N (2010) Optimal control of CSTR. Electroanalytical Chemistry. 3: 199–296. Shakib Joo AD (2013) A Comparison of Different Control Design Methods for the Linearized CSTR Temperature Model. Journal of Electrical and Computer Engineering Innovations. 1(2): 107–114.

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Innovative Educational Program for Biogas Production Carried Out at University of Hradec Králové (CZ) and at University of Opole (PL)

References [1] Kříž J, Hyšplerová L, Trnková L, Lyčka A, Vybíral B, Hlúbik J, et al. Innovation in study of physical and technical measurements. Czech-polish cooperation of universities. Chem Didact Ecol Metrol. 2014;19(1-2):37-45. DOI: 10.1515/cdem-2014-0003. [2] Igliński B, Piechota G, Buczkowski R. Development of biomass in polish energy sector: an overview. Clean Techn Environ Policy. 2015;17(2):317-329. DOI: 10.1007/s10098-014-0820-x. [3] The agricultural biogas plants in Poland. Oil and Gas Institute - National Research Institute Poland

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Control Study of Siret River Quality in Pascani County Area and Estimation of Its Pollution Level

Characterization of the Prut River. Environ. Eng. Manag. J. 2011 , 10 (3), 411-419. 7. Benchea, E.R.; Cretescu, I.; Macoveanu, M. Monitoring of Water Quality Indicators for Improving Water Resources Management of Bahlui River. Environ. Eng. Manag. J. 2011 , 10 (3), 327-332. 8. Zaharia, C. A comparative overview of the environmental impact assessment produced by different economic activities using the global pollution index. Proceeding of the 15th International Conference - Modern Technologies, Quality and Innovation, May 25-27, Vol.II 2011

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Application of photochromic pigment in mass dyed polypropylene fibres intended for intelligent textiles

Degradation and Stability, 96: 1648—1652. Vanicek K, Frei T, Litynska Z, Schmalweiser A (2000) UV-Index for the public, EUR — COST 713 Action: UV-B forecasting. Luxembourg: Office for Official Publications of the European Communities. Vikova M (2009) Methodology of measurement of chromic materials. In P. R. Somani (Ed), Chromic Materials, Phenomena and their Technological Applications (pp. 509—533). Maharashtra, India: Applied Science Innovations Private Limited. Vikova M, Vik M (2009) Alternative UV sensors based on color-changeable pigments. Advances in

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Influence of the ambient temperature on water and diiodomethane contact angle with quartz surface

). [7] L. Hołysz, K. Terpiłowski, E. Chibowski, Surface Innovations 1, 52, (2013). [8] A.B.D. Cassie, S. Baxter, Trans. Faraday Soc. 40, 546, (1944). [9] Young T. Philos Trans R Soc, 95, 65, (1805). [10] D.Y. Kwok, C.J. Budziak, A.W. Neumann, J.Colloid Interface Sci. 173, 143, (1995). [11] Marmur Contact Angle, Wettability and Adhesion. 6, 3, (2009). [12] R. Tadmor, Langmuir 20, 7659, (2004). [13] F. Etzler, Rev. Adhesion Adhesives, 1(1), 3, (2013). [14] M

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Innovative educational course II: Modelling of odour dispersion from agricultural biogas plants

Industrial or Trade Processes. CH2M BECA LTD, 2000. [28] Nielsen TB, Holmegaard HT. From University Student to Employee. Int J Innovation Sci Mathematics Educat. 2016;24(3):14-30. https://www.researchgate.net/publication/308889074 .

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