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Investigation of Load Capacity of Steel Concrete Composite Columns Src Reinforced by IPE

-1019. 7. Fakhri, SR 1995. Investigating steel columns filled with concrete and related Joints, master project in construction . technical college of Tehran university. 8. Liu, GQ and Owen, DRJ 1986. Ultimate load behaviour of reinforced concrete plates and shells under dynamic transient loading. International Journal for Numerical Methods in Engineering , 22(1) , 189-208. 9. Mostafinejad, D 2011. Concrete Structures . Arkan publication, 39-53. 10. Popov. Egor Paul 1952. Introduction to Mechanics of Materials . New York: Prentice-Hall . 11

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The Problems of Eastern Orthodox Church Buildings of Historical Value – Changing Uses over the Years

, t.11, redaktor: Halina Landecka (przewodniczący), D. Kopciowski, B. Stolarz, Lublin, Wojewódzki Urząd Ochrony Zabytków w Lublinie 2009, 303-306. 10. Zętar J.: Architektura sakralna Lubelszczyzny jako przejaw wielokulturowych tradycji regionu, w: Teka Komisji Architektury, Urbanistyki i Studiów Krajobrazowych, tom III, Polska Akademia Nauk Oddział w Lublinie, Politechnika Lubelska, Akademia Rolnicza w Lublinie, Lublin 2007, 203-224. 11. http://www.dachy.info.pl/technika/kula-ze-zlotych-lusek/ (dostęp: 05.01.2014). 12

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Optimal Shakedown of the Thin-Wall Metal Structures Under Strength and Stiffness Constraints

; 2010. doi:10.3846/1137-S. 8. Atkočiūnas J, Merkevičiūtė D, Venskus A. Optimal shakedown design of bar systems: Strength, stiffness and stability constraints. Comput Struct . 2008;86(17-18):1757-1768. doi:10.1016/j.compstruc.2008.01.008. 9. Atkočiūnas J, Norkus A. Method of fictitious system for evaluation of frame shakedown displacements. Comput Struct . 1994;50(4):563-567. doi:10.1016/0045-7949(94)90027-2. 10. Atkočiūnas J, Venskus A. Optimal shakedown design of frames under stability conditions according to standards. Comput Struct . 2011

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Optimization of the Structures at Shakedown and Rosen’s Optimality Criterion

;26(4):167-171. 29. König JA.: Shakedown of Elastic-Plastic Structures. Vol 7. Amsterdam: Elsevier; 1987. doi: 10.1016/B978-0-444-98979-6.50018-9. 30. Lange-Hansen P. Comparative Study of Upper Bound Methods for the Calculation of Residual Deformations After Shakedown. Department of Structural Engineering and Materials, Technical University of Denmark; 1998. 31. Liepa L, Karkauskas R.: Calculation of elastic-plastic geometrically nonlinear frames. Sci - Futur Lith. 2012;4(4):326-334. doi: 10.3846/mla.2012.51. 32. Mróz Z, Weichert D

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Analysis of the Dependence between Energy Demand Indicators in Buildings Based on Variants for Improving Energy Efficiency in a School Building

and 2003/30/EC (Off. J. the EU L 140 of 05.06.2009, p. 65). 6. Guide for improving the energy performance of buildings, The Ministry of Infrastructure and Building, Warszawa 2016 7. Katsaprakakis D. , Zidianakis G.: 2017. Upgrading Energy Efficiency For School Buildings In Greece, Procedia Enviromental Sciences, 38, 248-255. 8. Lis P.: 2009. Efektywność Energetyczna w Systemach Budowlano - Instalacyjnych. Materiały dydaktyczne, Częstochowa, European Union. 9. Pyka S., Liszka S.: 2013. Efektywniej o

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Possibility of Wastewater Treatment Using MFC with Ni-Co Catalyst of Fuel Electrode

experiments on a microbial fuel cell, Science, 137 (1962) 615-616. 9. Grady C.P.L., Daigger G.T., Love N.G., Filipe C.D.M., Biological Wastewater Treatment: Third Edition, IWA Publishing (Co-Published with CRC Press), 2011. 10. Hamnett A., Mechanism and electrocatalysis in the direct methanol fuel cell, Catalysis Today, 38 (4) (1997) 445-457. 11. Jadhav G.S., Ghangrekar M.M., Performance of microbial fuel cell subjected to variation in pH, temperature, external load and substrate concentration, Bioresource Technology, 100 (2

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Natural Gas Saving And Emissions Decrease In Public Health Care Sector – A Case Study

, D and Cheng, Ch-Ch 2016. Energy savings by energy management systems: A review. Renewable and Sustainable Energy Reviews 56 , 760–777. 40. Evens, A, Garascia, M and Isaacson, M 2017. Utilities and health: Energy efficiency as a common link. The Electricity Journal 30 , 10–14. 41. Document from government session Nr. 118/2018. National investment plan of the Slovak Republic for the years 2018-2030. Pilot version, approved 12.09.2018. [06.02.2019]. Available from http://www.rokovania.sk/File.aspx/ViewDocumentHtml/Mater-Dokum-220226?prefixFile

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