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An underwater spoiler on a warship: why, when and how?

Effect on Resistance , MAST Conference 2016, Amsterdam, Netherlands, 2016. [4] Uithof K., Hagemeister N., Bouckaert B., Oossanen P. G. van, Moerke, N., A systematic comparison of the influence of the Hull Vane®, interceptors, trim wedges, and ballasting on the performace of the 50m AMECRC series #13 patrol vessel , Warship 2016 ‘Advanced Technologies in Naval Design, Construction, & Operation’, Bath, UK, 2016. [5] [access 14.04.2018]. [6] [access 18.04.2018]. [7] https

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Simulations and Measurements of Eddy Current Magnetic Signatures

Current Generated Magnetic Field Signatures , EMSS 2012, Eckernförde 2012. [12] Holmes J. J., Modeling a Ship’s Ferromagnetic Signatures , ‘Synthesis Lectures on Computational Electromagnetics’, 2007, Vol. 2, No. 1. [13] Holmes J. J., Reduction of a Ship’s Magnetic Field Signatures , ‘Synthesis Lectures on Computational Electromagnetics’, 2008, Vol. 3, No. 1. [14] Kramer T., ‘New’ Earth Magnetic Field Simulation in Lehmbeck. First Magnetic Ranging of Submarine U212A , EMSS 2012, Eckernförde 2012.

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Assessment of the Possibility of Using Point -To-Point Radio L inks in the Mimo System for Constructing the Local Area Network Backbone

References [1] Chuah C. N., Foschini G. J., Valenzuela R. A., Chizhik D., Ling J., Kahn J. M., Capacity Growth of Multi-Element Arrays in Indoor and outdoor Wireless Channels, IEEE WCNC, Chicago 2000, pp. 1340-1344. [2] Foschini G., Gans M., On Limits of Wireless Communication in a Fading Environment when using Multiple Antennas, ‘Wireless Personal Communications’, 1998, Vol. 6, No. 3, pp. 311-355. [3] Guangze Z., Loyka S., Performance study of MIMO systems in a clustered multipath channel, ‘Proc. CCECE’, 2004

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Selected Elements of the Management of Production Processes

Transport’, 2018, Vol. 37, No. 1, pp. 13–22. [4] Borucka A., Forecasting of fire risk with regard to readiness of rescue and fire-fighting vehicles , ‘Interdisciplinary Management Research XIV’, Croatia, 2018, pp. 397–395. [5] Borucka A., Funkcjonowanie wojskowych oddziałów gospodarczych w nowym systemie logistycznym sił zbrojnych , ‘Logistyka’, 2013, No. 6, pp. 39–48 [ Functioning of military economic units in the new armed forces logistics system — available in Polish]. [6] Borucka A., Markov models in the analysis of the operation process of

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Modeling of Transport Processes in Terms of Seasonality of Transport

, Warszawa 2011 [ Forecasting in the management of sales and finances of the company — avaliable in Polish]. [12] Maciąg A., Pietroń R., Kukla S., Prognozowanie i symulacja w przedsiębiorstwie , PWE, Warszawa 2013 [ Forecasting and simulation in the enterprise — avaliable in Polish]. [13] Mikosz B., Borucka A., Organizacja gospodarki odpadami w siłach zbrojnych na tle zmian militarnych i nowych wyzwań stawianych polskiej armii , ‘Archiwum Gospodarki Odpadami i Ochrony Środowiska’, 2008, No. 8, pp. 1–12 [ Organization of waste management against the

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A Discrete Non-Classical Operational Calculus Model with the Horadam Difference

’, 2009, 4 (25), pp. 1243-1252. [13] Kalman D., Mena R., The Fibonacci numbers - exposed, ‘Math. Magazine’, 2003, 76 (3), pp. 167-181. [14] Mansour T., A formula for the generating functions of powers of Horadam’s sequence, ‘Australas. J. Combin.’, 2004, 30, pp. 207-212. [15] Mikusiński J., Operational Calculus, Pergamon Press, London 1959. [16] Weisstein E. W., ‘Horadam Sequence’, From MathWorld - A Wolfram Web Resource, [online], [access 12.04.2016].

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Research on the Responses of the Hybrid Power System based on Energy Profiles

REFERENCES [1] Adamczyk A., Energy profiles as a method for minimizing weight of hybrid power supply systems , ‘Zeszyty Naukowe Akademii Marynarki Wojennej — Scientific Journal of Polish Naval Academy’, 2017, Vol. 208, No. 1, pp. 5–13, DOI:10.5604/0860889X.1237617. [2] Adamczyk A., Grzeczka G., Hybrid power supply system model for offshore floating platforms , ‘Journal of Marine Engineering and Technology’, 2017, Vol. 16, No. 4, pp. 392–399. [3] Badwal S. P. S., Giddey S., Kulkarni A., Goel J., Basu S., Direct methanol fuel cells for

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Thrust Measurement of Biomimetic Underwater Vehicle with Undulating Propulsion

REFERENCES [1] Chu W.-S., Review of Biomimetic Underwater Robots Using Smart Actuators , ‘International Journal of Precision Engineering and Manufacturing’, 2012, Vol. 13, No. 7, pp. 1281–1292. [2] Curet O. M., Patankar N. A., Lauder G. V., MacIver M. A., Mechanical properties of a bio-inspired robotic knifefish with an undulatory propulsor , ‘Bionispiration & Biomimetics’, 2011, No. 6. [3] Liu F., Lee K., Yang C., Hydrodynamics of an Undulating Fin for a Wave-Like Locomotion System Design , IEEE/ASME ‘Transactions on Mechatronics’, 2012, Vol

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Concept of Semi -Markov Process

References [1] Barlow R. E., Proshan F., Statistical theory of reliability and life testing, Holt, Rinchart and Winston, Inc., New York 1975. [2] Cinlar E., Markov renewal theory, ‘Adv. Appl. Probab.’, 1969, No. 1, pp. 123-187. [3] Feller W., On semi-Markov processes, ‘Proc. Nat. Acad. Sci.’, 1964, Vol. 51, No. 4, pp. 653-659. [4] Grabski F., Theory of Semi-Markov Operation Processes, ‘Zeszyty Naukowe AMW’, 1982, 75A [in Polish]. [5] Grabski F., Semi-Markov models of reliability

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Ensuring Electromagnetic Compatibility On Newly Built Vessels for the Polish Navy

Compatibility , Part 4, Tests and trials of platforms and systems — available in Polish]. [12] NO-06-A511-5:2016, Kompatybilność elektromagnetyczna , cz. 5, Projektowanie i instalowanie sprzętu wojskowego , MON, 2016 [ Electromagnetic Compatibility , Part 5, Design and installation military equipment — available in Polish]. [13] Polski Rejestr Statków, Publication No. 11/P Environmental tests on marine equipment , Gdańsk 2016. [14] Polski Rejestr Statków, Publication No. 75/P Environmental tests on naval ships equipment , Gdańsk 2006. [15] PN

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