NSR Query Results


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NSR database version of May 3, 2024.

Search: Author = I.Y.Tsekhmistrenko

Found 6 matches.

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1990TS01      Yad.Fiz. 51, 326 (1990); Sov.J.Nucl.Phys. 51, 208 (1990)

I.Yu.Tsekhmistrenko

Energy of Strongly Deformed Nuclei in the Local Approiximation

NUCLEAR STRUCTURE 240Pu; calculated deformation energy. Modified Thomas-Fermi method, Skyrme-type effective interactions.


1988KU05      Yad.Fiz. 47, 363 (1988)

S.Yu.Kun, I.Yu.Tsekhmistrenko

Separation of Contributions from Direct and Statistical Mechanisms in Reactions with Arbitrary Spin Structure in Analysis of Fluctuations of Nuclear Cross Sections

NUCLEAR REACTIONS 28Si(polarized p, p), E=12-18 MeV; analyzed data; deduced reaction component separation. Statistical methods.


1987KO20      Yad.Fiz. 45, 1279 (1987)

V.M.Kolomiets, I.Yu.Tsekhmistrenko

Dynamics of Nuclear Liquid and Nuclear Kinetic Coefficients

NUCLEAR STRUCTURE 208Pb; calculated polarization, dissipative response functions, moments. Hydrodynamical model.


1986KO38      Izv.Akad.Nauk SSSR, Ser.Fiz. 50, 891 (1986); Bull.Acad.Sci.USSR, Phys.Ser. 50, No.5, 59 (1986)

V.M.Kolomiets, I.Yu.Tsekhmistrenko

The Hydrodynamic Response Function and the Kinetic Coefficients for the Macroscopic Collective Movement of Nuclei

NUCLEAR STRUCTURE 208Pb; calculated time-dependent dissipative quadrupole deformation response function.


1985KO28      Izv.Akad.Nauk SSSR, Ser.Fiz. 49, 985 (1985); Bull.Acad.Sci.USSR, Phys.Ser. 49, No.5, 141 (1985)

V.M.Kolomiets, I.Yu.Tsekhmistrenko

Hydrodynamical Fluctuation in Nuclear Densities

NUCLEAR STRUCTURE 40Ca, 66Zn, 90Zr, 120Sn, 208Pb; calculated monopole transition density; deduced nuclear compressibility. Hydrodynamical model.


1984KO21      Yad.Fiz. 39, 1356 (1984)

V.M.Kolomiets, S.R.Ofengenden, I.Yu.Tsekhmistrenko

Calculation of Equilibrium Nuclear Characteristics by Means of the Modified Thomas - Fermi Approximation

NUCLEAR STRUCTURE 40,48Ca, 58,60,62,64Ni, 70Zn, 90Zr, 208Pb; calculated neutron, proton density, binding energy, diffuseness parameter. Modified Thomas-Fermi approximation, self-consisent model.


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