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A. Ladjimi, M. Mékideche and A. Babouri

References Jiles D. C., Atherton D. L., Theory of ferromagnetic hysteresis. J. Magn. Magan. Mater.: 61-48 (1986). Jiles D. C., Introduction to Magnetism and Magnetic Materials. London, U. K., Chapman & Hall (1991). Jiles D. C., Atherton D. L., Theory of ferromagnetic hysteresis. Journal of Magnetism and Magnetic Materials 61: 48-60 (1986). Park G. S., Hahn S. Y., Lee K. S., Jung H. K., IEEE Transactions on Magnetics 29(2): 1542 (1993

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Adrian Bilski and Maciej Twardy

References R. Iyer and X. Tan, "Control of hysteretic systems through inverse compensation," Control Systems Magazine, IEEE , vol. 29, no. 1, pp. 83-99, February 2009. H. Rawa, Podstawy elektromagnetyzmu. Oficyna Wydawnicza Politechniki Warszawskiej, 1996, in polish. A. Visintin, Differential Models of Hysteresis , ser. Applied Mathematical Sciences. Springer, Berlin, 1994, vol. 111. Z. Chen, X. Tan, and M. Shahinpoor, "Quasi-static positioning of ionic

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Krzysztof Chwastek

References [1] Andrei P., Caltun O. Stancu Al., Rate dependence of first-order reversal curves by using a dynamic Preisach model of hysteresis . Physica B, 372: 265-8 (2006). [2] Andrei P., Stancu Al., Caltun O., Modeling and simulation of electrical circuits with hysteretic inductors by using a dynamic Preisach model . [In:] Preisach Memorial Book, Iványi A. (Ed.), Akádémiai Kiadó, Budapest, pp. 187-197 (2005). [3] Andrei P., Stancu Al., Hauser H., Fulmek P., Temperature, stress, and rate dependent

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Ferit Kula and Alper Aslan

replication note on unemployment in the OECD since the 1960s: what do we know?" Empirical Economics Blanchard, O. J. and Summers, L. H. (1986) "Hysteresis and the European unemployment problem", in NBER Macroeconomics Annual. MIT Press, Cambridge, MA. Camarero, M., Carrion-i-Silvestre, J. L. and Tamarit, C. (2006), "Testing for hysteresis in unemployment in OECD countries: new evidence using stationarity panel tests with breaks", Oxford Bulletin of Economics and Statistics, 68, 167-182. Camarero

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Hamid Tavakolipour and Mohsen Mokhtarian

pistachio drying kinetics. Int. J. Food Eng., 8, 3-42. Vega Mercado H. and Barbosa Canovas V., 1996. Dehydration of Foods. Chapman and Hall, New York. Zomorodian A.A. and Tavakoli R.A., 2007. The adsorption-desorption hysteresis effect on pistachio nuts. J. Agric. Sci. Technol., 9, 259-265. Zomorodian A., Kavoosi Z., and Momenzadeh L., 2011. Determination of EMC isotherms and appropriate mathematical models for canola. J. Food Bioprod. Proc., 89, 407-413.

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Wiesław Łyskawiński, Piotr Sujka, Wojciech Szeląg and Mariusz Barański

References Driesen J., Coupled electromagnetic-thermal problems in electrical energy transducers . Katholieke Universiteit Leuven, Leuven (2000). Ivanyi A., Hysteresis models in electromagnetic computation . Akademiai Kiadó, Budapest 1997. Jedryczka C., Sujka P., Szelag W., The influence of magnetic hysteresis on magnetorheological fluid clutch operation . COMPEL - The International Journal for Computation and Mathematics in Electrical and Electronic Engineering 28(3): 711

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Samia Rafraf, Lamia Guellouz, Houda Guiras and Rachida Bouhlila

-ray microtomography. Water Resources Res., 50, 4514-4529. Guiras Skandaji, 1996. Déformabilité des sols argileux non saturés: étude expérimentale et application à la modélisation. Thèse de doctorat, Ecole Nationale Supérieure de Géologie de Nancy, France. Haines W.B., 1930. Studies in the physical proprieties of soil : V. The hysteresis effect in capillary proprieties, and the modes of moisture distribution associated therewith. J. Agricultural Sci., 20, 97-116. Hilfer R., 2006. Macroscopic capillarity and hysteresis for flow in

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Yonghong Tan, Ruili Dong, Hui Chen and Hong He

References Ahn, C., Colbert, A.P., Anderson, B.J., Martinsen, O.G., Hammerschlag, R., Cina, S., Wayne, P.M and Langevin, H.M. (2008). Electrical properties of acupuncture points and meridians: A systematic review, Bioelectromagnetics 29 (4): 245-256. Dong, R. and Tan, Y. (2009). Modeling hysteresis in piezoceramic actuators using modified Prandtl-Ishlinskii model, Physica B 404 (8-11): 1336-1342. Ge, P. and Jouaneh, M. (1995). Modeling hysteresis in piezoceramic actuators, Precision Engineering 17 (3): 211

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P. Wawrzała

References [1] F. Preisach, Z. Für, Phys. 94, 277 (1935). [2] I.D. Mayergoyz, Mathematical Models of Hysteresis and their Applications, 2nd ed., Academic Press, 32 (2003). [3] D. Hughes, J.T. Wen, Smart Mater. Struct. 6, 3, 287 (1997). [4] P. Ge, M. Jouaneh, Precis. Eng. 20, 2, 99 (1997). [5] H. Ikeda, Y. Kadota, T. Morita, Jpn. J. Appl. Phys. 51, 09MD01 (2012). [6] R. Skulski, P. Wawrzała, K. Cwikiel, D. Boch - ene k, J. Intell. Mater. Syst. Struct. 18, 10

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Łukasz Knypiński, Lech Nowak, Piotr Sujka and Kazimierz Radziuk

References Ali Pourmousavi S., Hashem Nehrir M., Colson C. M., Wang C., Real-time energy management of a stand-alone hybrid wind-microturbine energy system using particle swarm optimization. IEEE Transactions on Sustainable Energy 1(3): 193-201 (2010). Benabou A., Clenet S., Piriou F., Comparasion of Preisach and Jiles-Atherton models to take into account hysteresis phenomenon for finite element analysis. Journal of Magnetism and Magnetic Materials 261: 139-160 (2003