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Дата публикацииНазваниеАвторы
2020Adsorption transition of a grafted ferromagnetic filament controlled by external magnetic fieldsSánchez, P. A.; Novak, E. V.; Pyanzina, E. S.; Kantorovich, S. S.; Cerdà, J. J.; Sintes, T.
2014Behavior of nanoparticle clouds around a magnetized microsphere under magnetic and flow fieldsMagnet, C.; Kuzhir, P.; Bossis, G.; Meunier, A.; Nave, S.; Zubarev, A.; Lomenech, C.; Bashtovoi, V.
2022Biological Impact of γ-Fe2O3 Magnetic Nanoparticles Obtained by Laser Target Evaporation: Focus on Magnetic Biosensor ApplicationsFadeyev, F. A.; Blyakhman, F. A.; Safronov, A. P.; Melnikov, G. Y.; Nikanorova, A. D.; Novoselova, I. P.; Kurlyandskaya, G. V.
2023Complex dynamics of induced vortex formation and thermal-fluid coupling in tri-hybrid nanofluid under localized magnetic field: a novel studyAhmad, S.; Ali, K.; Castellanos, H. G.; Aryanfar, Y.; Rashid, F. L.; Hendy, A. S.; Deifalla, A.; Ragab, A. E.; Khan, M.; Gomaa, H. G.
2014Continuous laser hardening with induction pre-heatingDolezel, I.; Kotlan, V.; Hamar, R.; Panek, D.
2021Effect Of Magnetic Field On Rheological Properties Of Cellulose Ethers SolutionsSoliman, T. S.; Rusinova, E. V.; Vshivkov, S. A.
2020Effects of constant magnetic field to the proliferation rate of human fibroblasts grown onto different substrates: Tissue culture polystyrene, polyacrylamide hydrogel and ferrogels γ-fe2o3 magnetic nanoparticlesBlyakhman, F. A.; Melnikov, G. Y.; Makarova, E. B.; Fadeyev, F. A.; Sedneva-Lugovets, D. V.; Shabadrov, P. A.; Volchkov, S. O.; Mekhdieva, K. R.; Safronov, A. P.; Armas, S. F.; Kurlyandskaya, G. V.
2020Effects of interactions on magnetization relaxation dynamics in ferrofluidsIvanov, A. O.; Camp, P. J.
2021Evidence for the Fulde–Ferrell–Larkin–Ovchinnikov state in bulk NbS2Cho, C. -W.; Lyu, J.; Ng, C. Y.; He, J. J.; Lo, K. T.; Chareev, D.; Abdel-Baset, T. A.; Abdel-Hafiez, M.; Lortz, R.
2018Experimental observation of chiral magnetic bobbers in B20-type FeGeZheng, F.; Rybakov, F. N.; Borisov, A. B.; Song, D.; Wang, S.; Li, Z. -A.; Du, H.; Kiselev, N. S.; Caron, J.; Kovács, A.; Tian, M.; Zhang, Y.; Blügel, S.; Dunin-Borkowski, R. E.
2020Field-induced circulation flow in magnetic fluidsMusickhin, A.; Zubarev, A. Y.; Raboisson-Michel, M.; Verger-Dubois, G.; Kuzhir, P.
2019Field-responsive colloidal assemblies defined by magnetic anisotropySteinbach, G.; Schreiber, M.; Nissen, D.; Albrecht, M.; Novak, E.; Sánchez, P. A.; Kantorovich, S. S.; Gemming, S.; Erbe, A.
2023Magnetic Nanocomposite Materials Based on Fe3O4 Nanoparticles with Iron and Silica Glycerolates Shell: Synthesis and CharacterizationKhonina, T. G.; Demin, A. M.; Tishin, D. S.; Germov, A. Y.; Uimin, M. A.; Mekhaev, A. V.; Minin, A. S.; Karabanalov, M. S.; Mysik, A. A.; Bogdanova, E. A.; Krasnov, V. P.
2018Magnetization, resistivity, specific heat and ab initio calculations of Gd5Sb3Samatham, S. S.; Patel, A. K.; Lukoyanov, A. V.; Suresh, K. G.
2019A Magneto-Reflectivity Study of CuGaSe2 Single CrystalsYakushev, M. V.; Mudryi, A. V.; Faugeras, C.; Martin, R. W.
2021Magnetoimpedance of CoFeCrSiB Ribbon-Based Sensitive Element with FeNi Covering: Experiment and ModelingVolchkov, S. O.; Pasynkova, A. A.; Derevyanko, M. S.; Bukreev, D. A.; Kozlov, N. V.; Svalov, A. V.; Semirov, A. V.
2021Magnetoimpedance thin film sensor for detecting of stray fields of magnetic particles in blood vesselMelnikov, G. Yu.; Lepalovskij, V. N.; Svalov, A. V.; Safronov, A. P.; Kurlyandskaya, G. V.
2004Magnetoresistance and Dephasing in a Two-dimensional Electron Gas at Intermediate ConductancesMinkov, G. M.; Germanenko, A. V.; Gornyi, I. V.
2018Magnetorheology of Polymer SystemsVshivkov, S.; Rusinova, E.
2022Mechanical Force Acting on Ferrogel in a Non-Uniform Magnetic Field: Measurements and ModelingBlyakhman, F. A.; Safronov, A. P.; Zubarev, A. Y.; Melnikov, G. Y.; Sokolov, S. Y.; Larrañaga, Varga, A.; Kurlyandskaya, G. V.