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Barbara Sołtysik and Robert Jankowski

References 1. Anagnostopoulos S.A.: Pounding of buildings in series during earthquakes, Earthquake Engineering and Structural Dynamics, 16 (1988) 443-456. 2. Anagnostopoulos S.A., Spiliopoulus K.V.: An investigation of earthquake induced pounding between adjacent building, Earthquake Engineering and Structural Dynamics, 21 (1992) 289-302. 3. Chau K.T., Wei X.X., Guo X., Shen C.Y.: Experimental and theoretical simulations of seismic poundings between two adjacent structures, Earthquake Engineering and Structural

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Jacek Dudkiewicz, Bronisław Gosowski and Piotr Organek

REFERENCES 1. Blicharski M.: Inżynieria materiałowa. Stal. Wydanie II zmienione i rozszerzone , Warszawa, WNT 2012. 2. Butnicki S.: Spawalnosć i kruchość stali , Warszawa, WNTechniczne 1991. 3. Czapliński K.: Dawne wyroby ze stopów żelaza , Wrocław, DWE 2009. 4. Dudkiewicz J., Gosowski B.: Generalizations of relations between strength and hardness of steel in structural elements under longitudinal load , Archives of Civil Engineering, (2004), 50, 1, 45-67. 5. Gosowski B., Kubica E.: Badania laboratoryjne konstrukcji metalowych

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Vlad Cucu, Daniel Constantin and Dan-Ilie Buliga

References [1] American Iron and Steel Institute, Specification for the design of cold-formed steel structural members , USA, 1997. [2] European Committee for Standardization, Eurocode 3: design of steel structures: Part 1.3, EN 1993-1-3, 2006. [3] K.F. Chung, Analysis and design of lapped connections between cold-formed steel Z sections , Elsevier / Thin-walled structures 43, March 2005, pp. 1071-1090 [4] D. Dubină, V. Ungureanu, Design of cold-formed steel structures , Lindab Collection, Bucharest, 2004.

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Tomasz Lipiński

Reference Adamczyk, M., Niżnik-Harańczyk, B., Pogorzałek, J., 2016. Wpływ technologii wytapiania stali z dodatkiem stopowym 3÷5% al na rodzaj i morfo-logię wtrąceń niemetalicznych. Prace Instytutu Metalurgii Żelaza, 2(68), 24-32 (In Polish). Beretta, S., Murakami, Y., 2001. Largest-Extreme-Value Distribution Analysis of Multiple Inclusion Types in Determining Steel Cleanliness. Met. And Mat. Trans. B, 32B, 517-523. Cummings, H.N., Stulen, F.B., Schulte,W.C., 1957. Relation of inclusions to the fatigue properties of SAE 4340 steel . Trans

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Jacek Szafran and Kazimierz Rykaluk

.: Benchmark cases for advanced design of structural steel connections , Praha, Ĉeska Technika ĈVUT 2016.

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Wojciech Siekierski

References 1. Furtak K., Mosty zespolone , PWN, Warszawa 1999 2. Hou W., Ye M., Design methods of headed studs for composite decks of through steel bridges in high-speed railway , J. Cent. South Univ. Technol., 18 (2011) 946-952 3. Karlikowski J., Madaj A., Wołowicki W., Mostowe konstrukcje zespolone stalowo-betonowe , WKŁ, Warszawa 2007. 4. Siekierski W., Analiza numeryczna sił rozwarstwiających w pomoście zespolonym przśsła kratowego , Inżynieria i Budownictwo, 12 (2011) 674-676. 5. Siekierski W., Kolejowe przśsła kratownicowe z pasem

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Jozef Gocál, Richard Hlinka, Jozef Jošt and František Bahleda

References [1] VIČAN, J. - GOCÁL, J. - JOŠT, J.: Fatigue resistance of typical fatigue prone riveted steel railway bridge structural detail. Communications - Scientific letters of University of Zilina, Vol. 13, No. 3/2011, University of Zilina, EDIS. [2] VIČAN, J. - JOŠT, J. - GOCÁL, J.: Determination of Fatigue Category and Numerical Analysis of the Stringer to Crossbeam Connection of Riveted Steel Railway Bridges. 23rd Czech and Slovak International Conference „Steel structures and bridges 2012“, Podbanské, Slovakia, 26

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Włodzimierz Sroka, Joanna Cygler and Bożena Gajdzik

References Abrahamson, E. & Fombrum, C.J. (1994). Macro cultures: determinants and consequences. Academy of Management Review, 19(4), 728-755. Ahuja, G. (2000). Collaboration networks, structural holes and innovation: a longitudinal study. Administrative Science Quarterly, 45(3), 425-455, http://dx.doi.org/10.2307/2667105 Argote, L., McEvily, B. & Reagans, R. (2003). Managing knowledge in organizations: an integrative framework and review of emerging themes. Management Science, 49(4), 571-582. http

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Maciej Major, Izabela Minda and Izabela Major

References [1] BARCIK, W. - BILISZCZUK, J. - MACHELSKI, C.: Projektowanie stalowych kładek dla pieszych Design of steel footbridges, Dolnośląskie Wydawnictwo Edukacyjne, Katowice 2007, ISBN: 9788371251597 (In Polish). [2] PAŃTAK, M.: Analizy dynamiczne w projektowaniu kładek dla pieszych, Dynamic analysis in the design of footbridges, Przegląd budowlany 6/2016, Wydział Inżynierii Lądowej Politechniki Krakowskiej, pp. 78-82 (In Polish). [3] VIČAN, J. - GOCAL, J. - ODROBINAK, J. - MORAVCIK, M. - KOTEŠ, P.: Determination of Railway Bridges Loading

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Robert Ulewicz and František Nový

. Materials Today-Proceedings (3)4. pp. 1060-1063. Available at: http://dx.doi.org/10.1016/j.matpr.2016.03.048 [Accessed 11 Feb. 2018]. Schaeffler, DJ. (2017). The Importance of Lubrication in Sheet Metal Selection for Automotive Body Construction The Drive to Lightweight Materials. Tribology & Lubrication Technology (73)11. pp.48-50. Ulewicz, R. and Mazur, M. (2013). Fatigue testing structural steel as a factor of safety of technical facilities maintenance. Production Engineering Archives, 1/1, pp.32-34. [online] Available at: http