V
Vladimir E. Zakharov
Researcher at University of Arizona
Publications - 394
Citations - 26418
Vladimir E. Zakharov is an academic researcher from University of Arizona. The author has contributed to research in topics: Nonlinear system & Wave turbulence. The author has an hindex of 74, co-authored 381 publications receiving 24220 citations. Previous affiliations of Vladimir E. Zakharov include Skolkovo Institute of Science and Technology & Russian Academy of Sciences.
Papers
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Journal ArticleDOI
Influence of alternating magnetic field on physical and mechanical properties of crystals
V. I. Karas,V. I. Karas,E. V. Karasyova,A. V. Mats,V. I. Sokolenko,A. M. Vlasenko,Vladimir E. Zakharov +6 more
TL;DR: In this article, the authors presented the results of a study at the Kharkiv Institute of Physics and Technology (N.A.S.Karaazin and P. N. Karazin).
Hamiltonian formalism for weak turbulence of inertial waves in rotating fluids
TL;DR: In this paper, the authors present the Hamiltonian description of incompressible rotating fluid by using the Clebsch variables and find the trans-formation which allows them to present the three-wave interaction Hamiltonian in normal variables in simple explicit form.
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Vladimir Aleksandrovich Marchenko (on his 90th birthday)
Yurii Makarovich Berezanskii,Vladimir E. Zakharov,Vladimir Kotlyarov,Klavdii Veniaminovich Maslov,Sergei Petrovich Novikov,Leonid Pastur,Fedor Semenovich Rofe-Beketov,A. M. Samoilenko,Evgenii Ya Khruslov +8 more
TL;DR: The prominent mathematician Vladimir Aleksandrovich Marchenko as discussed by the authors is the author of more than 130 publications, including 12 monographs, and has obtained fundamental results in harmonic analysis and the theory of almost periodic functions.
Study of the Bis(imino)pyridyl Complex of Fe(II)/Nafen and Titanium-Magnesium/Nafen Catalysts for Synthesis of Polyethylene/Nafen Composites by in situ Ethylene Polymerization
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Pairwise interactions of coherent structures on the surface of deep water
TL;DR: In this article, the dynamics of pairwise interactions of coherent structures (breathers) on the surface of deep water were numerically investigated in the framework of the Dyachenko-Zakharov model.