Search Results - "A. Garibov"

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  1. 1

    Radiation-Induced Heterogeneous Processes of Water Decomposition in the Presence of Mixtures of Silica and Zirconia Nanoparticles by Agaev, T. N., Garibov, A. A., Melikova, S. Z., Imanova, G. T.

    Published in High energy chemistry (01-03-2018)
    “…The radiation-induced heterogeneous processes of water decomposition on mixtures of silicon dioxide ( n -SiO 2 ) and zirconium dioxide ( n -ZrO 2 )…”
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  2. 2

    Production and quality control of radioactive yttrium microspheres for medical applications by Ghahramani, M.R., Garibov, A.A., Agayev, T.N.

    Published in Applied radiation and isotopes (01-02-2014)
    “…In this paper, a method for production of yttrium silicate microspheres is reported. Yttrium silicate microspheres with approximate sizes of 20–50µm were…”
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  3. 3

    Radioecological research of some water resources in central region of Azerbaijan by Garibov, A A, Mikayilova, A C, Humbatov, F Y, Ghahramani, M T, Nagiyev, J A

    “…Background: In this proposed work, the products of238U radioactive decomposition:226Ra, which has a comparatively great decomposition period and228Ra…”
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  4. 4

    Kinetics of the Radiation-Catalytic and Catalytic Decomposition of Water on a Surface of Nano-Zirconium by Agaev, T. N., Garibov, A. A., Guseinov, V. I., Melikova, S. Z., Tagiev, M. M., Dzhafarova, S. Z.

    “…The kinetics of molecular hydrogen formation is studied in the radiation-catalytic and catalytic decomposition of water on the surface of nano-Zr. The effect…”
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  5. 5

    Radiation and catalytic properties of the n-ZrO2–n-Al2O3 systems in the process of hydrogen production from water by Garibov, A. A., Agayev, T. N., Melikova, S. Z., Imanova, G. T., Faradjzade, I. A.

    Published in Nanotechnologies in Russia (01-05-2017)
    “…The influence of the interaction between n -ZrO 2 and n -Al 2 O 3 on their radiation and catalytic activities in the process of hydrogen production from water…”
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  6. 6

    Preliminary results on a new method for producing yttrium phosphorous microspheres by Ghahramani, M.R., Garibov, A.A., Agayev, T.N.

    Published in Applied radiation and isotopes (01-09-2014)
    “…This paper reports on a new method to embed phosphorus particles into the matrix of yttrium aluminum silicate microspheres. Yttrium phosphorus glass…”
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  7. 7

    Heterogeneous water radiolysis in the presence of uranyl silicate by Garibov, A. A., Agaev, T. N., Mirzoev, M. N., Aliev, S. M.

    “…Uranyl silicates with different contents of uranyl are synthesized. For comparison, the radiationcatalytic activities of uranyl silicate with 10% of uranium…”
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  8. 8

    Radiation-heterogeneous processes in stainless steel in contact with seawater by Garibov, A. A., Agaev, T. N.

    “…The kinetics of accumulation of molecular hydrogen during γ radiolysis of seawater is studied. The effect of γ radiation on stainless steel (SS)-seawater (SW)…”
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  9. 9

    EPR study of silicon nitride (Si3N4) nanoparticles exposed to neutron irradiation by Huseynov, Elchin M., Garibov, Adil A., Valiyev, Sahil P.

    “…Paramagnetic centers in nano Si3N4 particles and their nature were comparatively studied before and after neutron irradiation. Electron Paramagnetic Resonance…”
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  10. 10

    A novel way to production yttrium glass microspheres for medical applications by Ghahramani, Mohammad. R., Garibov, Adil. A., Agayev, Teymur. N., Mohammadi, Mohammad. A.

    Published in Glass physics and chemistry (01-05-2014)
    “…In this paper a novel method of producing yttrium aluminum silicate microspheres is reported. Yttrium aluminum silicate microspheres around 20–50 μm in size…”
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  11. 11

    Improvement of efficiency of the solar-assisted production of a combustible gas mixture from biomass by Salamov, O. M., Garibov, A. A., Sultanova, K. D.

    Published in Applied solar energy (01-10-2015)
    “…The possibilities of converting solar energy into chemical energy of hydrogen-containing combustible gases by means of pyrolysis and biomass (BM) gasification,…”
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  12. 12

    Gamma rays mediated water splitting on nano-ZrO2 surface: Kinetics of molecular hydrogen formation by Ali, Imran, Imanova, Gunel T., Garibov, Adil A., Agayev, Teymur N., Jabarov, Sakin H., Almalki, Abdulraheem SA, Alsubaie, Abdullah

    “…Hydrogen generation by water splitting is reported in nano-ZrO2+H2Oabs. and nano-ZrO2+H2Oflu. systems using gamma radiation at different ZrO2 particle sizes…”
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  13. 13

    Study of the Gamma Radiation Induced Change on the Surface Morphology of Electroless Ni–P Deposited AISI 304 Stainless Steel by Hashemi, M. Y., Garibov, A. A., Babanejhad, A., Agayev, T. N., Teymourzadeh, M.

    “…In this research electroless Ni–P coatings were deposited on AISI 304 stainless steel. Deposits have been irradiated in 30 % H 2 O 2 environment with a 60 Co…”
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  14. 14

    Experimental evaluation of IBR-2M kinetics parameters from stochastic power noise by Pepelyshev, Yu. N., Taiybov, L. A., Garibov, A. A., Mekhtiyeva, R. N.

    Published in Atomic energy (New York, N.Y.) (01-02-2013)
    “…The results of an experimental study of the stochastic fluctuations of the energy of IBR-2M pulses, which are used to obtain some parameters of the reactor…”
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  15. 15

    Heat engineering calculation of a parabolo-cylindrical solar concentrator with tubular reactor for crude oil preparation for refining in the oil fields by Mamedov, F. F., Samedova, U. F., Salamov, O. M., Garibov, A. A.

    Published in Applied solar energy (01-02-2008)
    “…A technique is proposed for the heat engineering calculation of a parabolo-cylindrical concentrator with tubular solar reactor, and the expressions are…”
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  16. 16

    Effect of preliminary radiation-oxidation treatment on electrophysical properties of zirconium by Garibov, A A, Aliev, A G, Agaev, T N, Ismailov, Sh S, Velibekova, G Z

    Published in Metal science and heat treatment (01-09-2007)
    “…The effect of preliminary radiation-oxidation treatment on the current density and on the current-voltage characteristic of zirconium is studied. The…”
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  17. 17

    Two-pion femtoscopic correlations in Be+Be collisions at sNN=16.84 GeV measured by the NA61/SHINE at CERN by Adhikary, H., Allison, K. K., Amin, N., Antićić, T., Baszczyk, M., Battaglia, D., Bazgir, A., Bielewicz, M., Bogomilov, M., Brandin, A., Bryliński, W., Buryakov, M., Csanád, M., Cybowska, J., Czopowicz, T., Davis, N., Dorosz, P., Fields, L., Fodor, Z., Garibov, A., Golosov, O., Golubeva, M., Grebieszkow, K., Guber, F., Igolkin, S. N., Ilieva, S., Ivashkin, A., Izvestnyy, A., Kadija, K., Kargin, N., Karpushkin, N., Kashirin, E., Kiełbowicz, M., Kitagawa, H., Kolesnikov, R., Koshio, Y., Kozłowski, B., Krasnoperov, A., Kucewicz, W., Kuchowicz, M., Kurepin, A., László, A., Lykasov, G., Lyubushkin, V. V., Maćkowiak-Pawłowska, M., Makhnev, A., Maksiak, B., Malakhov, A. I., Marcinek, A., Marton, K., Mathes, H.-J., Matulewicz, T., Matveev, V., Melkumov, G. L., Merzlaya, A., Mik, Ł., Morozov, S., Nagai, Y., Nishimori, S., Paolone, V., Petukhov, O., Pidhurskyi, I., Płaneta, R., Popov, B. A., Pszczel, D., Puzović, J., Ren, L., Ortiz, V. Z. Reyna, Rondio, E., Roth, M., Rumberger, B. T., Rybczynski, M., Rybicki, A., Sakashita, K., Schmidt, K., Seryakov, A. Yu, Shah, U. A., Słodkowski, M., Staszel, P., Stefanek, G., Ströbele, H., Šuša, T., Świderski, Ł., Szukiewicz, R., Taranenko, A., Tefelska, A., Tefelski, D., Tereshchenko, V., Toia, A., Tsenov, R., Turko, L., Tveter, T. S., Urbaniak, M., Valiev, F. F., Veberič, D., Vechernin, V. V., Volkov, V., Wójcik, K., Zviagina, A., Zwaska, R.

    “…This paper reports measurements of two-pion femtoscopic correlations in Be+Be collisions at a beam momentum of 150 A GeV / c  (energy available in the…”
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  18. 18

    Multiplicity and transverse momentum fluctuations in inelastic proton–proton interactions at the CERN Super Proton Synchrotron by Aduszkiewicz, A., Ali, Y., Andronov, E., Blondel, A., Bogomilov, M., Bravar, A., Brzychczyk, J., Busygina, O., Christakoglou, P., Cirković, M., Czopowicz, T., Davis, N., Debieux, S., Dembinski, H., Deveaux, M., Diakonos, F., Di Luise, S., Dominik, W., Dumarchez, J., Ereditato, A., Fodor, Z., Gaździcki, M., Golubeva, M., Grebieszkow, K., Haesler, A., Hasegawa, T., Herve, A., Hierholzer, M., Igolkin, S., Ivashkin, A., Kadija, K., Kapoyannis, A., Kaptur, E., Kisiel, J., Kobayashi, T., Kolesnikov, V. I., Kolev, D., Kowalik, K., Kowalski, S., Krasnoperov, A., Kuich, M., Larsen, D., László, A., Lewicki, M., Maćkowiak-Pawłowska, M., Malakhov, A. I., Manić, D., Marcinek, A., Mathes, H.-J., Matulewicz, T., Melkumov, G. L., Nakadaira, T., Naskręt, M., Nirkko, M., Nishikawa, K., Panagiotou, A. D., Pavin, M., Petukhov, O., Pistillo, C., Płaneta, R., Popov, B. A., Posiadała, M., Puławski, S., Ravonel, M., Redij, A., Richter-Was, E., Robert, A., Röhrich, D., Rondio, E., Roth, M., Rubbia, A., Rustamov, A., Rybczynski, M., Sakashita, K., Sarnecki, R., Schmidt, K., Sekiguchi, T., Seryakov, A., Seyboth, P., Shibata, M., Słodkowski, M., Staszel, P., Stefanek, G., Ströbele, H., Šuša, T., Szuba, M., Tada, M., Tefelski, D., Tereshchenko, V., Tsenov, R., Turko, L., Vassiliou, M., Veberič, D., Vechernin, V. V., Vesztergombi, G., Vinogradov, L., Wilczek, A., Wojtaszek-Szwarc, A., Wyszyński, O., Zambelli, L.

    “…Measurements of multiplicity and transverse momentum fluctuations of charged particles were performed in inelastic p+p interactions at 20, 31, 40, 80, and 158 …”
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  19. 19

    KS0 meson production in inelastic p+p interactions at 158 GeV/c beam momentum measured by NA61/SHINE at the CERN SPS by Acharya, A., Adhikary, H., Allison, K. K., Amin, N., Antićić, T., Babkin, V., Blondel, A., Bogomilov, M., Brzychczyk, J., Buryakov, M., Busygina, O., Bzdak, A., Cherif, H., Ćirković, M., Csanad, M., Cybowska, J., Czopowicz, T., Damyanova, A., Davis, N., Deliyergiyev, M., Deveaux, M., Dmitriev, A., Dominik, W., Dumarchez, J., Feofilov, G. A., Fields, L., Fodor, Z., Garibov, A., Gaździcki, M., Golubeva, M., Ilieva, S., Johnson, S. R., Kadija, K., Kashirin, E., Kiełbowicz, M., Kireyeu, V. A., Klochkov, V., Kolesnikov, V. I., Korzenev, A., Kovalenko, V. N., Koziel, M., Kozłowski, B., Krasnoperov, A., Kuich, M., Kurepin, A., László, A., Lazareva, T. V., Łojek, K., Maćkowiak-Pawłowska, M., Majka, Z., Maksiak, B., Malakhov, A. I., Marcinek, A., Marino, A. D., Mathes, H.-J., Matulewicz, T., Melkumov, G. L., Merzlaya, A. O., Messerly, B., Mik, Ł., Morozov, S., Nagai, Y., Naskręt, M., Ozvenchuk, V., Panova, O., Paolone, V., Petukhov, O., Pidhurskyi, I., Płaneta, R., Podlaski, P., Porfy, B., Pszczel, D., Puławski, S., Puzović, J., Renfordt, R., Rondio, E., Rumberger, B. T., Rumyantsev, M., Rybczynski, M., Rybicki, A., Selyuzhenkov, I., Seryakov, A. Yu, Seyboth, P., Staszel, P., Stefanek, G., Stepaniak, J., Šuša, T., Taranenko, A., Tefelska, A., Tefelski, D., Tereshchenko, V., Turko, L., Unger, M., Valiev, F. F., Veberič, D., Wickremasinghe, A., Wójcik, K., Zaitsev, A., Zimmerman, E. D., Zwaska, R.

    “…The production of K S 0 mesons in inelastic p+p collisions at beam momentum 158  GeV / c ( s NN = 17.3   GeV ) was measured with the NA61/SHINE spectrometer at…”
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  20. 20

    Search for a critical point of strongly-interacting matter in central $$^{40}$$Ar + $$^{45}$$Sc collisions at 13 A–75 A  GeV/c beam momentum by Adhikary, H., Adrich, P., Allison, K. K., Amin, N., Andronov, E. V., Antićić, T., Arsene, I.-C., Bajda, M., Balkova, Y., Baszczyk, M., Battaglia, D., Bazgir, A., Bhosale, S., Bielewicz, M., Blondel, A., Bogomilov, M., Bondar, Y., Bostan, N., Brandin, A., Bryliński, W., Brzychczyk, J., Buryakov, M., Camino, A. F., Christakoglou, P., Ćirković, M., Csanád, M., Cybowska, J., Czopowicz, T., Dalmazzone, C., Davis, N., Diakonos, F., Dmitriev, A., von Doetinchem, P., Dominik, W., Dorosz, P., Dumarchez, J., Engel, R., Feofilov, G. A., Fields, L., Fodor, Z., Friend, M., Gaździcki, M., Golosov, O., Golovatyuk, V., Golubeva, M., Grebieszkow, K., Guber, F., Igolkin, S. N., Ilieva, S., Ivashkin, A., Izvestnyy, A., Kadija, K., Kapoyannis, A., Kargin, N., Karpushkin, N., Kashirin, E., Kiełbowicz, M., Kireyeu, V. A., Kitagawa, H., Kolesnikov, R., Kolev, D., Koshio, Y., Kovalenko, V. N., Kowalski, S., Kozłowski, B., Krasnoperov, A., Kucewicz, W., Kuchowicz, M., Kuich, M., Kurepin, A., László, A., Lewicki, M., Lykasov, G., Lyubushkin, V. V., Maćkowiak-Pawłowska, M., Majka, Z., Makhnev, A., Maksiak, B., Malakhov, A. I., Marcinek, A., Marino, A.D., Mathes, H.-J., Matulewicz, T., Matveev, V., Melkumov, G. L., Merzlaya, A., Mik, Ł., Morawiec, A., Morozov, S., Nagai, Y., Nakadaira, T., Naskręt, M., Nishimori, S., Ozvenchuk, V., Panagiotou, A. D., Panova, O., Paolone, V., Petukhov, O., Pidhurskyi, I., Płaneta, R.

    “…Abstract The critical point of strongly interacting matter is searched for at the CERN SPS by the NA61/SHINE experiment in central $$^{40}$$ 40 Ar +  $$^{45}$$…”
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