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S. Cafiso, M. Kieć, M. Milazzo, G. Pappalardo and F. Trovato

Safety Inspections on Two – Lane Rural Roads Project TREN – 03 – ST – S07.31286 – Aracne Editrice. ISBN 978-88-548-1429-5. Gennaio 2008. 4. S. Cafiso, G. La Cava, A. Montella, Safety Index for Evaluation of Two Rural Highways, Transportation Research Record: Journal of the Transportation Research Board, issue number 2019, 136–145, 2007 5. European Commission, Transport, Road Safety. Road Safety evolution in the EU Accessed November 14, 2014 6. Ministero delle Infrastrutture

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K.V.S.Gopala Krishna Sastry, A. Ravitheja and T.Chandra Sekhara Reddy

, “Experimental Study on Durability of Concrete Containing Slag and Foundry sand”. International Journal of Scientific Research & Development, Vol. 3, (03),2015. 7. C.G.Konapure and D.J.Ghanate, “Effect of Industrial Waste Foundry Sand as Fine Aggregate on Concrete”. International Journal of Current Engineering and Technology, 5(4),2015. 8. N. Gurumoorthy, K. Arunachalam, “The micro and mechanical behaviour of Treated Used Foundry Sand concrete”, Construction and Building Materials, Volume 123;184-190,2016. 9. Pranita Bhandari, Dr

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K.K. Adewole and S.J. Bull

A mit M., 2009. Recent fracture and fatigue research in steel structures, National Council of Structural Engineers Associations(NCSEA). , assessed 02/03/2012. 8. S imulia , 2007. Abaqus documentation, Abaqus Incorporated, Dassault Systemes. 9. H ooputra H., G ese H., D ell , H., and W erner H., 2004. A Comprehensive Failure Model for Crashworthiness Simulation of Aluminium Extrusions. International Journal of Crashworthiness, Vol. 9, no.5, Pages 449–464. 10. A dewole K. K., B ull S. J

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Nageh N. Meleka, Alaa A. Bashandy and Mohamed A. Arab

Concrete Research 36, 1362-1370 (2006). 18. E.S.S. 4756-1/2009: Ordinary Portland Cement, Egyptian Standard Specification, Egypt (2009). 19. ASTM C 494-03: Chemical Admixtures, American Society for Testing and Materials (ASTM), ASTM International, Philadelphia, USA (2003). 20. E.C.P. 203/2007: Design and Construction for Reinforced Concrete Structures, Egyptian Code of Practice, Research Centre for Houses Building and Physical Planning, Cairo, Egypt (2007). 21. Lee, M.G., Kan, Y.C., Chen, K.C.: A Preliminary

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P. B. Sakthivel

.2014.0309002 43. F.U.A. Shaikh (2013), “Deflection hardening behaviour of short fibre reinforced fly ash based geopolymer composites.” Materials and Design, 50: 674-682, 2013, DOI: 10.1016/j.matdes.2013.03.063 44. H.N. Atahan, B.Y. Pekmezci and E.Y. Tuncel (2013), "Behaviour of PVA Fibre-Reinforced Cementitious Composites under static and impact flexural effects", Journal of Materials in Civil Engineering, ASCE, 25(10): 1438-1445, DOI:10.1061/(ASCE)MT.1943-5533.0000691 45. P.B. Sakthivel, Flexural and Impact Performance

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A. Zofka and I. Yut

. Transportation Research Record: Journal of Transportation Research Board, 2057, 107-13, 2008. 15. H. Ceylan, K. Gopalakrishnan, M.B. Bayrakc, Neural networks based concrete airfield pavement layer moduli backcalculation. Civil Engineering and Environmental Systems, 25, 185-99, 2008. 16. F. Xiao, S.N. Amirkhanian, Artificial neural network approach to estimating stiffness behavior of rubberized asphalt concrete containing reclaimed asphalt pavement. Journal of Transportation, 135, 8, 580-9, 2009. 17. J.P. Hallin, et al

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A. Dziadosz and A. Kończak

References 1. A. Aamodt, ,E. Plaza, “Case-Based Reasoning: Foundational Issues, Methodological Variations, and System Approaches”, AI Communications. IOS Press, Vol. 7: 1, s. 39-59. 2. R. Bucoń, Zastosowanie rozszerzonej rozmytej metody AHP do ustalenia istotności kryteriow oceny stanu eksploatacyjnego obiektow mieszkalnych, Warsztaty Inżynierow Budownictwa, „Problemy przygotowania i realizacji inwestycji budowlanych”, Puławy, 185-190, 2009. 3. M. Dytczak, G. Ginda, Construction schedule of works as

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C. R. Dache, E. Rosu, M. Gaiceanu, R. Paduraru, T. Munteanu and G. Frangopol

7. REFERENCES [1] M.E. Roşu, I. Bivol, C Nichita, M. Găiceanu, Optimizarea Energetică a Sistemelor de Conversie Electromecanică, Editura Tehnică, Bucureşti, 1999. [2] Marian Găiceanu, Conducerea Optimală a Sistemelor de Acţionare Reglabile cu Maşini Asincrone Utilizând Metode Avansate de Comandă, PhD Thesis, 2002. [3] C. Thanga Raj, S. P. Srivastava, and Pramod Agarwal – Differential Evolution based Optimal Control of Induction Motor Serving to Textile Industry, IAENG International Journal of Computer Science, 35:2, IJCS_35_2_03, 2008 [4

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Wacław Morgaś and Zdzisław Kopacz

Mercator and Polar Stereographic Map Projections. Standardization Document NGA.SIG.0012_2.0.0_UTMUPS, Washington 2014, D.C. 25-03-2014, [online],, [access 27.09.2016]. [8] Norm of defense: NO-02-A019, Mapy wojskowe. Geodezyjne układy odniesienia, elipsoidy, siatki kartograficzne i siatki odniesienia. Wymagania, Wojskowe Centrum Normalizacji, Jakości i Kodyfikacji, Warszawa 2012 [Geodetic coordinate systems, ellipsoids, graticules, reference grids. Requirements - available in Polish]. [9] PDNO-06

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P. Onu

5. REFERENCES [1] N. Golovanov, V. Racicovschi, R. Porumb, C. Ivanovici, I. Popa, L.A. Koteleș, S. Crăciun, “Sisteme de iluminat electric cu LED-uri. Eficiența enegetică”, 2009. [2] M. Collota, S. Tirrito, R. Caponetto, “Flexible street lamp lighting system management through Power Line”, 2014. [3] H.G. Coanda, “Designing a control system for smart outdoor street lighting using advanced communication technologies”, The Scientific Bulletin of the Electrical Engineering Faculty, year 2015, no.1 (29), ISSN 1843-6188, pp. 25-30. [4] C. Jing, D