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A. Bhatt and M.B. Parappagoudar

castings, Journal of materials processing technology, 182 (1), 615-623. [13] Laz'ko, V.G., Nikitin, V.N.&Karchevskaya,N.I.(1986). Effect of carbon content on the structure and mechanical properties of high-strength weldable steel 03G4N2MAF, Metal Science and Heat Treatment, March, Volume 28, Issue 3, 186-188. [14] Babichev, M.A. & Velikanova. A.A. (1964). Effect of the concentration of manganese on the wearability of steel, Metal Science and Heat Treatment, May, Volume 6, Issue 6, 289-292. [15] Kharitonov, V.A., Popova, N

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F. Pastorek, K. Borko, S. Dundeková, S. Fintová and B. Hadzima

ultra-high-cycle fatigue of a lowalloy steel. Mater. Des. 2014, 57, 103-113. 7. Geng, S.; Sun, J.; Guo, L. Effect of sandblasting and subsequent acid pickling and passivation on the microstructure and corrosion behavior of 316L stainless steel. Mater. and Design. 2015, 88, 1-7. 8. Galvan-Reyes, C.; Fuentes-Aceituno, J.C.; Salinas-Rodríguez, A. The role of alkalizing agent on the manganese phosphating of a high strength steel part 1: The individual effect of NaOH and NH4OH. Surf. and Coat. Technol. 2016, 291, 179-188. 9

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Jelena Pantic Bisevac, Mirjana Djukic, Ivan Stanojevic, Ivana Stevanovic, Zeljko Mijuskovic, Ana Djuric, Borko Gobeljic, Tatjana Banovic and Danilo Vojvodic

. 39. Sander CS, Hamm F, Elsner P, Thiele JJ. Oxidative stress in malignant melanoma and non-melanoma skin cancer. Br J Dermatol 2003; 148(5): 913-22. 40. Schadendorf D, Zuberbier T, Diehl S, Schadendorf C, Czarnetzki BM. Serum manganese superoxide dismutase is a new tumour marker for malignant melanoma. Melanoma Res 1995; 5(5): 351-3. 41. Mantovani G, Macciò A, Madeddu C, Mura L, Massa E, Gramignano G et al. Reactive oxygen species, antioxidant mechanisms and serum cytokine levels in cancer patients: impact of an antioxidant treatment

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PE Barney, LP Bush and TC Tso

plant; Kyoto Daigaku Shokuryo Kagaku Kenkyusho Hokoku 20 (1960) 14-21. Kirsch, R. K., M. E. Harward und R. G. Petersen: Interrelation of iron, manganese, and molybdenum in the growth and nutrition of tomatoes grown on culture solution; Plant Soil 12 (1960) 259-275. LeCompte, S. B., Jr.: Tobacco substation at Windsor, Report for 1940; Conn, Agric. Exp. Stn. Bull. (New Haven) Nr. 444, 1941, 270-278. Lohnis, M. P.: Symptoms of manganese toxicity in cultivated crops; Soils and Fert. 13 (1950

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S. J. Xiao, W. Liu, L. Gao and J. Zhang

, Steel research international 86, 411-42 (2015). [6] C. Tao, S. Fei, Z. Liu, J. Du, X. Fan, M. Li, Y. Chen, China’s Manganese Industry 29, 1-5 (2011). [7] A.J. Godsell, D.J. Fray, Metallurgical Transactions B 21, 217-228 (1990). [8] B. Cartwright, S.F. Ravitz, Transactions of The Electrochemical Society 89, 373-382 (1946). [9] F.R. Cattoir, T.A. Sullivan, Bureau of Mines, (1969). [10] K.P.V. Lei, T.A. Sullivan, Bureau of Mines, (1971). [11] M. Selecka, A. Salak, Powder

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Małgorzata Poniewozik

. A. & T riemer R. E. 2005. Morphological separation of the euglenoid genera Trachelomonas and Strombomonas based on lorica development and posterior strip reduction. J. Phycol. 41 : 590–605. B üchel C., B arber J., A nanyev G., E shaghi S., W att R. & D ismukes C. 1999. Photoassembly of the manganese cluster and oxygen evolution from monomeric and dimeric CP-47-reaction center photosystem II complexes. Proc. Natl. Acad. Sci. U.S.A. 96 : 14288–14293. C onforti V., W alne P. L. & D unlap J. R. 1994. Comparative ultrastructure and

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Przemysław Tkaczyk, Wiesław Bednarek, Sławomir Dresler, Jaromir Krzyszczak, Piotr Baranowski and Cezary Sławiński

boron, copper and molybdenum and active manganese content in soil profiles (in Polish). Roczn. Glebozn., 19(1), 151-166. Czuba R. and Zaniuk A., 1968. Investigations on dislocation of available elements in soil profiles. Part III. Correlation between organic carbon and colloidal clay content in soil, its pH and content of available magnesium and some microelements (in Polish). Roczn. Glebozn., 19(2), 249-66. Domańska J., 2009. Soluble forms of zinc in profiles of selected types of arable soils. J. Elementology, 14(1), 55-62. Dudziak S., 1973

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D. Medyński, A. Janus and J. Chęcmanowski

References [1] Podrzucki, C. (1991). Cast iron. Structure, properties and application. Vol. 1, 2. Krakow: Editorial Office ZG STOP (in Polish). [2] Janus, A. (2013). Forming of castings structure of austenitic cast iron Ni-Mn-Cu . Wroclaw: Editorial Office of Wrocław University of Technology (in Polish). [3] Pietrowski, S. & Bajerski, Z. (2005). Ni-Resist cast iron with reduced nickel content. Archives of Foundry . 5(17), 445-458 (in Polish). [4] Lacaze, J. (2001). Discussion of „The role of manganese and copper in the eutectoid

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Inese Mārtiņsone, Mārīte-Ārija Baķe, Žanna Martinsone and Maija Eglīte

., Dietz, M. C., Ihrig, A., Triebig, G. (1999). Biomonitoring of manganese in blood, urine and axillary hair following low-dose exposure during the manufacture of dry cell batteries. Int. Arch. Occup. Environ. Health , 72 , 521-527. Bake, M. A., Feldnere, V., Luse, I. (1998). Quality control of determination of manganese in the polluted air. In: Proceedings of the International Conference Eco Balt, Riga. (pp. 72-76). Riga. Bowler, R. M., Gysens, S., Diamond, E., Booty, A., Hartney, C., Roels, H. A. (2003

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M. Margabandhu, S. Sendhilnathan, S. Senthilkumar and K. Hirthna

present work was carried out on synthesis and investigation of manganese substituted CoFe2O4 nanoparticles dispersed in carrier fluid transformer oil, subjected to external magnetic fields. 2 Experimental 2.1 Materials The chemicals used for the preparation of magnetic nanoparticles and ferrofluids were transformer oil, sodium hydroxide pellets (NaOH), cobalt chloride (CoCl 2 · 6H 2 O), manganese chloride (MnCl 2 · 4H 2 O) and ferric chloride (FeCl 3 · 6H 2 O). They were of very high purity (99 %) and were obtained from Merck and Nice chemicals. Hence