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Optimization of Work Schedules Executed using the Flow Shop Model, Assuming Multitasking Performed by Work Crews

KASS program in scheduling”, Technical Transaction, ISSUE 2-B(6): 217-224, 2014. 5. M. Krzemiński, “KASS v.2.2. Scheduling Software for Construction with Optimization Criteria Description”, Acta Physica Polonica A, Vol. 130 No. 6: 1439 – 1442, 2016. 6. R. Marcinkowski, “Metody rozdziału zasobów realizatora w działalności inżynieryjno – budowlanej”, WAT, 2002 7. M. L. Pinedo, “Scheduling: Theory, Algorithms, and Systems” Springer, 2012 8. M. Rogalska, W. Bożejko, Z. Hejducki, “Time/cost optimization using hybrid evolutionary algorithm in

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Scheduling Linear Construction Projects with Constraints on Resource Availability

of Resource Allocation in Repetitive Construction Schedules”, ITcon 10: 265-273, 2005. 16. M. Podolski, “Scheduling of multiunit projects using tabu search algorithm”, Journal of Science of the gen. Tadeusz Kosciuszko Military Academy of Land Forces 1: 110-122, 2015. 17. M. Rogalska, W. Bożejko, Z. Hejducki, “Time/cost optimization using hybrid evolutionary algorithm in construction project scheduling”, Automation in Construction 18(1): 24-31, 2008. 18. S. Selinger, S. “Construction Planning for Linear Projects

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Priority Scheduling in the Planning of Multiple-Structure Construction Projects

. Radziszewska-Zielina, G. Śladowski, “Supporting the Selection of a Variant of the Adaptation of a Historical Building with the Use of Fuzzy Modelling and Structural Analysis”, Journal of Cultural Heritage 26, 53–63, 2017. 20. E. Radziszewska-Zielina, G. Śladowski, M. Sibielak, “Planning the reconstruction of a historical building by using a fuzzy stochastic network”, Automation in Construction 84, 242-257, 2017. 21. M. Rogalska, W. Bożejko, Z. Hejducki, “Time/cost optimization using hybrid evolutionary algorithm in construction project scheduling”, Automation in

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Simple Prequalification Models

using evolutionary algorithm, Archives of Civil Engineering, 54, 2, 371-394, 2008. 26. W.K.M. Brauers, E.K. Zavadskas, Z. Turskis, T. Vilutien¨e, Multi-objective contractor’s ranking by applying the MOORA method, Journal of Business Economics and Management, 9, 4, 245-255, 2008. 27. R. Ginevičius, V. Podvezko, Multicriteria graphical-analytical evaluation of the financial state of construction enterprises, Technological and Economic Development of Economy, 14, 4, 452-461, 2008. 28. S. Mitkus, E. Trink˝unien¨e, Reasoned

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Problems of the Selection of Construction Technology for Structures in the Centres of Urban Agglomerations

Krakowie Górnictwo i geoin_ynieria, 3, 319-327, 2017 41. R.I.P. Perez, A.Carballal, J.R. Rabunal, O.A. Mures, M. D. Garcia-Vidaurrazaga, “Predicting vertical urban growth using genetic evolutionary algorithms in Tokyo's Minato ward” Journal of Urban Planning and Development 144(1) 2018 42. L.S. Pheng, C.J Chuan „Just-in-time management of precast concrete components Journal of Construction Engineering and Management, 127(6), 494-501, 2001 43. E. Radziszewska-Zielina „Assessment methods of partnering relations of Polish

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The Effect of Interference Parameters on the Exploitation Capabilities of an Underwater Vehicle

References [1] Dulęba I., Metody i algorytmy planowania ruchu robotów mobilnych i manipulacyjnych, EXIT, Warszawa 2001 [Methods an algorithms used for planning movement of mobile and manipulation robots - available in Polish]. [2] Fossen T. I., Fjellstad O. E., Nonlinear modelling of marine vehicle in 6 degrees of freedom, ‘Journal of Mathematical Modelling of Systems’, 1995, No. 1. [3] Fossen T. I., Guidance and Control of Ocean Vehicles, John Wiley & Sons Ltd., 1994. [4] Garus J., Dynamika i

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