Citácie pôvodných vedeckých prác

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Ohlasy na vedecké štúdie
1. Hajko V., Petrovič P., Zentko A.: The Occurence of Negative Barkhausen Jumps in
the Process of the Magnetic Aftereffect. Acta physica slovaca 25 (1975), 74-77.
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1. Mc Clure J.C. jr., Schröder K.: Magnetic Barkhausen Effect. CRC Critical
Reviews in Solid State Sciences 6 (1976), 45-83.
2. Hajko V., Jánoš Š., Feher A., Petrovič P.: Thermal Conductivity of Neodymium and
Europium at Low Temperatures. Physica 86-88B (1977), 1249-1250.
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2. Wohlfarth E.P.: Thermodynamic aspects of itinerant electron magnetism.
Physica B 91 (1977), 305-314.
3. Feher A., Reiffers M., Petrovič P., Jánoš Š.: The Electrical Resistivity of Nb-Ti and
Nb-Ti-Zr Alloys at Low Temperatures. Physica status solidi (a) 39 (1977),
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3. Malkov M.P., Zeľdovič A.G., Danilov L.B., Fradkov A.B.: Fizičeskije svojstva
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4. Feher A., Jánoš Š., Petrovič P., Flachbart K., Reiffers M.: Teploprovodnosť
redkozemeľnych metallov cerijevoj podgruppy pri nizkich temperaturach. Fizika
nizkich temperatur 4 (1978), 1305-1315.
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4. Ochotin A.S., Borovikova R.P., Nečajeva T.V., Puškarskij A.S.:
Teploprovodnosť tvjordych tel. (cit. na s. 71, 72, 83). Energoatomizdat, Moskva
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5. Petrovič P., Feher A., Molokáč Š., Jánoš Š.: Spin-wave Contribution to the Heat
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5. Desai P.D.: Thermodynamic Properties of Nickel. International Journal of
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6. Milman V.Y., Grishchenko T.A., Evlashina M.L., Zhalkotitarenko A.V., Antonov
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Thermal Expansion and Phonon-Limited Resistivity of Transition Metals.
Journal of Physics and Chemistry of Solids 53 (1992), 565-575.
6. Molokáč Š., Jánoš Š., Feher A., Petrovič P., Štefányi P.: The Influence of the
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Magnetic Field on the Electronic Contribution to the Specific Heat of Thulium.
Acta physica slovaca 35 (1985), 231-234.
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7. Daou J.N., Vajda P., Hilscher G., Pillmayr N.: Magnetic and Thermal
Properties of Tm and alpha-TmHx. Journal de Physique 49 (1988), 357-358.
7. Lindqvist P., Petrovič P., Liu Z.Y., Rapp Ö.: Intermediate Temperature Range
Electrical Resistivity of some Metallic Glasses. Materials Science and Engineering
99 (1988), 235-238.
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8. Karpe N., Ahlgren M., Bottinger J., Chechenin N.G., Krog j.P., Norström A.:
Disorder-induced covariation of the residual resistance ratio superconducting
T-C of amorphous Zr60Cu40. Physical Review B51 (1995), 625-628.
8. Anders E.E., Zvjagin A.I., Feher A., Nyéki J., Petrovič P.: Termodinamičeskije
charakteristiki CsDy(MoO4)2 pri nizkich temperaturach. Sovjet Journal of Low
Temperature Physics. Fizika nizkich temperatur 14 (1988), 431-434.
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9. Borowiec M., Jendrzejcyak A., Szymczak H., Dyakonov V.P., Markovitch V.I.,
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Phys. Solid State 38 (1996), 1229-1232.
9. Brovko I., Petrovič P., Zatroch M., Zemčík T.: Kinetics of the nanocrystalline
structure formation. Hyperfine Interactions 69 (1991), 529-532.
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10. Hampel G., Graf T., Korus J., Fricke M., Hesse J.: Structure Investigations on
Annealed Fe(CuNb)SiB Alloys with Different Si-B Contents. Physica status
solidi A – Applied Research 149 (1995), 515-533.
11. Bhagat N., Gupta A., Principi G.: Amorphous to nanocrystalline transformation
in metallic glasses. Transactions of the Indian Institute of Metals 48 (1995),
159-162.
10. Petrovič P., Brovko I., Zemčík T., Zatroch M., Konč M., Švec T., Dubovinský M.:
Fine grain structure formation in the FeCuNb(Mo,W,Zr)SiB alloys. Journal of
Magnetism and Magnetic Materials 112 (1992), 331-333.
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12. Miglierini M.: Mössbauer Effect Study of the Hyperfine Field Distribution in
the Residual Amorphous Phase of Fe-Cu-Nb-Si-B Nanocrystalline Alloys.
Journal of Physics – Condensed Matter 6 (1994), 1431-1438.
13. Miglierini M., Lipka J., Sitek J.: Crystallization Kinetics of Amorphous Fe72.5-x
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14. Miglierini M., Lipka J.: Mössbauer Study of FeCuNbSiB – type Nanocrystals.
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Journal of Magnetism and Magnetic Materials 140 (1995), 463-464.
15. Borrego J.M., Conde C.F., Conde A, Pena-Rodriguez V.A., Greneche J.M.:
Devitrification process of FeSiBCuBbX nanocrystalline alloys: Mössbauer
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11. Zatroch M., Petrovič P., Brovko I.: Combined method for the analysis of complex
Mössbauer spectra including a distribution in hyperfine interactions. Nuclear
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Ohlasy podľa SCI a SCOPUS:
Miglierini M.: Mössbauer Effect Study of the Hyperfine Field Distribution in
the Residual Amorphous Phase of Fe-Cu-Nb-Si-B Nanocrystalline Alloys.
Journal of Physics – Condensed Matter 6 (1994), 1431-1438.
Floresllmas H.: Marriage of the Burger-Van Cittert and Allen Deconvolution
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12. Zatroch M., Petrovič P., Aubertin F., Gonser U.: Mössbauer spectroscopy of
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21. Moyo T.: Pressure and Temperature Variation of Coercitive Field in Fe-rich
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22. Moyo T.: Compositional Dependence of an Effect of Hydrogen Doping on
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23. Bakonyi I., Skumryev V., Reisser R., Hilscher G., Varga L.K., Kiss L.F.,
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13. Brovko I., Petrovič P., Zatroch M., Konč M.: Crystallization of the
FeNbCu(Au,Ag,Pd,Pt,Mn)SiB Alloys Investigated by X-ray and by Mössbauer
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Ohlasy podľa SCI a SCOPUS:
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24. Miglierini M.: Mössbauer Effect Study of the Hyperfine Field Distribution in
the Residual Amorphous Phase of Fe-Cu-Nb-Si-B Nanocrystalline Alloys.
Journal of Physics – Condensed Matter 6 (1994), 1431-1438.
25. Miglierini M., Lipka J.: Mössbauer Study of FeCuNbSiB–type Nanocrystals
Journal of Magnetism and Magnetic Materials 140 (1995), 463-464.
26. Lanotte L., Kaczkowski Z., Müller M., Germano R.: Dynamic stress sensitivity
of Fe73.5Cu1(Ta,W)3Si15.5B7 ribbons after heat-treatment in vacuum. Nuovo
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27. Gutierrez J., Barandiaran J.M., Minguez P., Kazkowski Z., Ruuskanen P.,
Vlasák G., Švec P., Duhaj P.: Influence of heat treatment on the magnetic and
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28. Gupta R., Enzo S., Frattini R., Hernando A., Marin P., Mulas G., Perin A.,
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29. Varga L.K., Kaptas G., Kemeny T.: Soft magnetic nanocrystalline powders
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30. Li F., Wu B.Y., Ji Y.L, Wang G.Q., Zhao J.W., Zhang S.Y.: Amorphous
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31. Long G.J., Grandjean F. (editors): Mössbauer Spectroscopy to Magnetism and
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32. Rodriguez C., Barbiric D.A., Pepe M.E., Kovacs J.A., Alonso J.A., deTendler
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33. Lanotte L., Kaczkowski Z., Müller M., Germano R.: Dynamic stress sensitivity
of Fe73.5Cu1(Ta,W)3Si15.5B7 ribbons after heat-treatment in vacuum. Nuovo
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35. Gutierrez J., Barandiaran J.M., Minguez P., Kazkowski Z., Ruuskanen P.,
Vlasák G., Švec P., Duhaj P.: Influence of heat treatment on the magnetic and
piezomagnetic
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amorphous
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nanocrystalline
Fe64Ni10Nb3Cu1Si13B9 alloy strips. Sensors and Actuators A – Physical 106
(2003), 69-72.
36. Gutierrez J., Barandiaran J.M., Minguez P., Kazkowski Z.: Influence of thermal
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37. Idzikowski B., Kováč J.: Magnetism in amorphous TmxCo70-xB30 . Acta Physica
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17. Šepelák V., Zatroch M., Tkáčová K., Petrovič P., Wissmann S., Becker K.D.:
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38. Millot N., Begin-Colin S., Perriat P., Le Caer G.: Structure, cation distribution
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39. Chinnasamy C. N., Narayanasamy A., Ponpandian N., Chattopadhyay K.: The
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Mg-dopped lithium ferrite Li0.44Fe2.44Mg0.24O4. Czechoslov. J. Phys 51 (2001).
18. Pavlík G., Sovák P., Petrovič P., Zorkovská A., Matta P., Konč M.: Structure and
magnetic properties of Fe-Cr-Cu-Nb-Si-B alloys. Acta physica slovaca 48 (1998),
675-678.
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41. Brzózka K.: Badanie struktury i wlasciwosci stopów amorficznych i
nanokrystalicznych na bazie želaza metoda spektometrii Mossbauerowskiej.
Politechnika Radomska, 2003. ISBN 1642-5278.
19. Vojtaník P., Komová E., Petrovič P., Varga R., Sassik H., Grössinger R.: Effect of
Ni-additions in nanocrystallized FeNiNbCuSiB alloys. Acta physica slovaca 48
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McHenry M. E., Willard M. A., Laughlin D. E.: Amorphous and nanocrystalline
materials for applications as soft magnets. Progress in Materials Science 44
(1999), 291-433.
Illeková E., Duhaj P.: Heating rate limited kinetics of crystallization of
FINEMET plus Ni amorphous ribbons. Acta physica slovaca 50 (2000), 525532.
Butvin P., Butvinová B., Illeková E., Vlasák G.: Macroscopic heterogenity
effects in FeNiNbCuBSi ribbons. J. Magn. Magn. Mater. 237 (2001), 237-240.
Mitra A., Panda A.K., Singh S.R., Rao V., Ramachandrarao P.: Magnetics and
structural behaviours of nanocrystalline Fe70,8Nb3,7Cu1Al2,7Mn0,7Si13,5B7,6 alloy.
Philosophical Magazine 83 (2003), 1495-1509.
Kazkowski Z., Vlasák G., Švec P., Duhaj P.: Magnetostriction and
magnetomechanical coupling of heat-treated Fe54Ni20Nb3Cu1Si13B9 metallic
glass. Materials Science and Engineering A – Structural Material Properties
Microstructure and Processing 375-7 (2004), 1062-1064.
Kazkowski Z., Vlasák G., Švec P., Duhaj P.: Influence of heat-treatment on
magnetic, magnetostrictive and piezomagnetic properties and structure of
Fe54Ni20Nb3Cu1Si13B9 metallic glass. Materials Science and Engineering A –
Structural Material Properties Microstructure and Processing 375-7 (2004),
1065-1068.
20. Števulová N., Buchal A., Žák T., Petrovič P., Schneeweis O., Tkáčová K.: Structure
and magnetic properties of mechanically alloyed Fe-Si system. Acta physica
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Dorofeev G.A., Ul'yanov A.L., Konygin G.N., Elsukov E.P.: A comparive
analysis of mechanisms, thermodynamics, and kinetics of the mechanical
alloying in Fe(68)M(32) (M=Si, Sn) systems. Phys. Met. Metallogr. 91 (2001),
44-52.
Yelsukov E.P., Fomin V.M., Nemtsova U.M., Shklyaev D.A.: Evolution of
structure in the disordered nanocrystalline Fe75Si25 alloy under heat
treatment. Materials Science Forum 386 (2002), 181-186.
Yelsukov E.P., Dorofeev G.A., Konygin G.N., Fomin V.M., Zagainov A.V.:
Comparative analysis of the mechanisms and kinetics of mechanical alloying in
the system Fe(75)X(25) (X=Si, C). Physics of Metals and Metallography 93
(2002), 278-288.
Fomin V.M., Yelsukov E.P., Vytovtov D.A., Dorofeev G.A.: Evolution of the
structure of nanocrystalline Fe and Fe75Si25 alloy upon heat treatment. Physics
of Metals and Metallography 97 (2004), 282-289.
21. Števulová N., Buchal A., Petrovič P., Tkáčová K., Šepelák V.: Structural
investigation of the high-energy milled Fe-Si system. Journal of Magnetism and
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52. Tcherdyntsev V.V., Kaloshkin S.D., Tomilin I.A., Shelekhov E.V., Serdyukov
V.N.: Alloy formation at ball milling of Cu50Cr50 and Fe86.5Cu13.5 compositions.
Mater. Sci. Forum 360 (2001), 361-366.
53. Dorofeev G.A., Ul'yanov A.L., Konygin G.N., Elsukov E.P.: A comparive
analysis of mechanisms, thermodynamics, and kinetics of the mechanical
alloying in Fe(68)M(32) (M=Si, Sn) systems. Physics of Metals and
Metallography 91 (2001), 44-52.
54. Yelsukov E.P., Dorofeev G.A., Konygin G.N., Fomin V.M., Zagainov A.V.:
Comparative analysis of the mechanisms and kinetics of mechanical alloying in
the system Fe(75)X(25) (X=Si, C). Physics of Metals and Metallography 93
(2002), 278-288.
55. Yelsukov E.P., Fomin V.M., Nemtsova U.M., Shklyaev D.A.: Evolution of
structure in the disordered nanocrystalline Fe75Si25 alloy under heat
treatment. Materials Science Forum 386 (2002), 181-186.
56. Kwan Y.S., Kim H.T., Golubkova G.V., Vlasov A.A., Lamorski O.I.: Phase
analysis of the mechanically alloyed Fe-Si powder by differential dissolution
technique. Metals and Materials International 9 (2003), 433-437.
57. Wang C.B., Wang Q.X., Shen Q., Zhang L.M.: Preparation of Fe-Si composite
powders by mechanical alloying. Key Engineering Materials 249 (2003), 311314.
58. Hu C.Z., Zhong D.M., Zhong L.M.: Microstructure of Fe-Si prepared by MASPS. Key Engineering Materials 249 (2003), 315-317.
59. Cherdytsev V.V., Kaloshkin S.D., Sedyukov V.N., Tamilin I.A., Sheleykhov E.V.,
Baldokhin Y.V.: Evolution of the phase composition of Fe86,5Cu13,5 upon
mechanical alloying. Physics of Metals and Metallography 95 (2003), 329-333.
60. Butyagin P.Y., Zhernovenkova Y.V., Povstugar I.V.: Work of formation of grain
boundaries upon metal plastic deformation. Colloid Journal 65 (2003), 141143.
61. Fomin V.M., Yelsukov E.P., Vytovtov D.A., Dorofeev G.A.: Evolution of the
structure of nanocrystalline Fe and Fe75Si25 alloy upon heat treatment. Physics
of Metals and Metallography 97 (2004), 282-289.
62. Yelsukov E.P., Dorofeev G.A.: Mechanical alloying in binary Fe-M (M=C, B,
Al, Si, Ge, Sn) systems. Journal of Materials Science 39 (2004), 5071-5079.
63. Li C.-J., Li V.-Y., Ma W.-H., Fukanuma H.: Characterization of microstructure
of nanostructured Fe-Si coating deposited by cold spraying. Proceedings of the
International Thermal Spray Conference (2004), p. 371-377.
64. Hoseini H.R.M., Bahrami A.: Preparation of nanocrystalline Fe-Si-Ni soft
magnetic powders by mechanical alloying. Materials Science and Engineering
B – Solid State Materials for Advanced Technology 123 (2005), 74-79.
65. Hu C.Z., Zhang D.M., Zhang L.M.: Fabrication of Fe-6,5wt%Si bulk by spark
plasma sintering. Journal of Wuhan University of Technology – Materials
Science Edition 20 (2005), 72-74.
66. Yelsukov E.P., Dorofeev G.A.: Nanostructure and phases formation under
mechanical alloying of binary powder mixtures of Fe and sp-element (M),M=C,
B, Al, Si, Ge, Sn. Hyperfine Interactions 60 (2006), 51-65.
67. Bahrami A., Hoseini H.R.M., Abachi P., Miraghaei S.: Structural and soft
magnetic properties of nanocrystalline Fe85Si10Ni5 powders prepared by
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mechanical alloying. Materials Letters 60 (2006), 1068-1070.
68. Shen O., Li R., Yuan W.J., Zhang L.M., Zhang T.: Powder reaction mechanism
in fabrication of high silicon iron alloy. Powder Metallurgy 50 (2007), 336340.
22. Kollár P., Petrovič P., Fechová E., Füzer J., Konč M., Kováč J.: The structure and
magnetic properties of Fe-Si-Cu-Nb-B powder prepared by mechanochemical way.
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69. Konieczny J., Dobrzański L.A., Przybył A., Wysłocki J.J.: Structure and
magnetic properties of powder soft magnetic materials. Journal of
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70. Brzózka K.: Badanie struktury i wlasciwosci stopów amorficznych i
nanokrystalicznych na bazie želaza metoda spektometrii Mossbauerowskiej.
Politechnika Radomska, 2003. ISBN 1642-5278.
23. Zorkovská A., Kováč J., Sovák P., Petrovič P., Konč M.: Structure and magnetic
behaviour of the Fe-Cu-Nb-Si-B-Al alloy. Journal of Magnetism and Magnetic
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Bandyopadhyay D.: Study of materials using Mössbauer spectroscopy.
International Materials Reviews 51 (2006), 171-208.
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Exchange field penetration in Fe73.5Cu1Mo3Si12.5 Al1B9 Fe alloy. Journal of
Alloys and Compounds 438 (2007),15-20.
Liu H., Wu Y., Zhang G., Yin G., Du Y.: Variation of permeability of Nb-poor
finemet under different field amplitudes. Journal of Magnetism and Magnetic
Materials 320 (2008), 1705-1711.
Liu H.S., Yin C.H., Miao X.X., Han Z.D., Wang D.M., Du Y.W.: Soft magnetic
properties and microstructure of novel Nb poor finemet type alloys. Materials
Science and Technology 24 (2008), 45-48.
Ohlasy vo vedeckých monografiách:
75. Brzózka K.: Badanie struktury i wlasciwosci stopów amorficznych i
nanokrystalicznych na bazie želaza metoda spektometrii Mossbauerowskiej.
Politechnika Radomska, 2003. ISBN 1642-5278.
24. Zorkovská A., Kováč J., Petrovič P., Sovák P.: About the role of aluminium in the
Finemet. Czechoslovak Journal of Physics 52 (2002), 163-166.
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76. Brzózka K.: Badanie struktury i wlasciwosci stopów amorficznych i
nanokrystalicznych na bazie želaza metoda spektometrii Mossbauerowskiej.
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Politechnika Radomska, 2003. ISBN 1642-5278.
25. Fechová E., Kollár P., Füzer J., Kováč J., Petrovič P., Kavečanský V.: The
influence of the long time milling on the structure and magnetic properties of the
Fe-Cu-Nb-Si-B powder. Materials Science and Engineering B – Solid State
Materials for Advanced Technology 107 (2004), 155-160.
Ohlasy podľa SCI a SCOPUS:
77. Shen T.D., Schwarz R.B., Thompson J.D.: Soft magnetism in mechanically
alloyed nanocrystalline materials. Physical Review B72 (2005), art.No.
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78. Farghali A.A., Khedr M.A., Khalek A.A.A.: Catalic decomposition of
carbondioxide over freshly reduced activated CuFe2O4 nano-crystals. Journal
of Materials Processig Technology 107 (2007), 81-87.
79. Journal of Electronic Materials and Chemical Engineering, East College,
Taiwan, Far vol. 7( 2006), 17-20.
26. Roupcová P., Schneeweiss O., Bezdička P., Petrovič P.: Influence of surrounding
atmosphere on crystallization of as-quenched Fe-Ni-Zr ribbon, Metallic Materials,
Kovové materiály 44 (2006), 127-132.
Ohlasy podľa SCI a SCOPUS:
80. Černák J., Stloukal I., Influence of Fe/B ratio upon molybdenum tracer
diffusion in crystallized Fe79-y Mo8Cu1B12+y alloy, Metallic Materials, Kovové
materiály 44 (2006), 307-311.
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