Search Results - "Seregina, E V"

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  1. 1

    On a Mathematical Model of the Diffusion of Excitons in a Semiconductor Taking into Account Their Variable Lifetime by Seregina, E. V., Stepovich, M. A., Filippov, M. N.

    “…The time dependence of the concentration of nonequilibrium minority charge carriers generated in a homogeneous semiconductor material by a sharply focused…”
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    Journal Article
  2. 2

    Comparative Analysis of the Matrix Method and the Finite-Difference Method for Modeling the Distribution of Minority Charge Carriers in a Multilayer Planar Semiconductor Structure by Seregina, E. V., Kalmanovich, V. V., Stepovich, M. A.

    “…The stationary differential heat and mass transfer equation with discontinuous coefficients describes various time-independent physical processes, for example,…”
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  3. 3

    On Modeling the Distributions of Minority Charge Carriers Generated by a Wide Electronic Beam in Planar Multilayer Semiconductor Structures by Seregina, E. V., Kalmanovich, V. V., Stepovich, M. A.

    “…The paper presents the results of modeling the distributions of minority charge carriers generated by a wide electron beam in two-layer semiconductor…”
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  4. 4

    Possibility of Applying the Matrix Method to Modeling the Cathodoluminscescence Caused by a Wide Electron Beam in a Planar Multilayer Semiconductor Structure by Stepovich, M. A., Kalmanovich, V. V., Seregina, E. V.

    “…Results are presented from investigating the possibility of applying the analytical matrix method to modeling the diffusion of nonequilibrium minority charge…”
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  5. 5

    Mathematical Modeling of Heat and Mass Transfer Phenomena Caused by Interaction between Electron Beams and Planar Semiconductor Multilayers by Kalmanovich, V. V., Seregina, E. V., Stepovich, M. A.

    “…An analytical matrix method is proposed for the mathematical modeling of heat and mass transfer caused by the interaction between broad electron beams and…”
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  6. 6

    Qualitative Analysis of a Class of Differential Equations of Heat and Mass Transfer in a Condensed Material by Turtin, D. V., Seregina, E. V., Stepovich, M. A.

    “…We propose a mathematical model of three-dimensional diffusion of nonequilibrium minority charge carries caused by a pulsating sharply focused electron beam in…”
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  7. 7

    The Use of the Hankel Transform to Solve Nonstationary Diffusion Problem by Turtin, D. V., Stepovich, M. A., Kalmanovich, V. V., Seregina, E. V.

    “…We use the integral Hankel transform to study a nonstationary diffusion problem caused by interaction of electrons and a semiconductor homogeneous target. We…”
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  8. 8

    Aspects of Modeling the Electron Probe Heating of a Semiconductor Target by Amrastanov, A. N., Seregina, E. V., Stepovich, M. A.

    “…The problem of heat distribution in semiconductor materials irradiated by finely focused electron beams with no exchange of heat between the target and…”
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  9. 9

    On Estimating the Heating of the Surface of a Homogeneous Metal Target with a Low-Energy Electron Probe by Amrastanov, A. N., Seregina, E. V., Stepovich, M. A.

    “…—The problem of heat distribution in metal materials irradiated by finely focused low-energy electron beams in the absence of heat exchange between the target…”
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  10. 10

    The projection Galerkin method for solving the time-independent differential diffusion equation in a semi-infinite domain by Makarenkov, A. M., Seregina, E. V., Stepovich, M. A.

    “…Using the diffusion equation as an example, results of applying the projection Galerkin method for solving time-independent heat and mass transfer equations in…”
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  11. 11

    Estimation of the Heating of a Semiconductor Target Surface by a Low-Energy Electron Beam by Amrastanov, A. N., Seregina, E. V., Stepovich, M. A., Filippov, M. N.

    “…The problem of heat distribution in semiconductor materials irradiated with sharply focused lowenergy electron beams in the absence of heat exchange between…”
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  12. 12

    Analysis of the Three-Dimensional Model of Diffusion of Minority Charge Carriers Generated by an Electron Probe in a Heterogeneous Semiconductor Material by Means of Projection Methods by Seregina, E. V., Stepovich, M. A., Makarenkov, A. M.

    “…Algorithms for using the Galerkin projection method and the projection least squares method to analyze the three-dimensional model of the diffusion of minority…”
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  13. 13

    On the possibility of using the Galerkin projection method to model the spatial distribution of minority charge carriers generated by an electron probe in a semiconductor by Seregina, E. V., Stepovich, M. A., Makarenkov, A. M., Filippov, M. N.

    “…In this paper, the results of using the Galerkin projection method to model the spatial distribution of minority charge carriers generated by an electron probe…”
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  14. 14

    Thermal Action of an Electronic Probe with X-ray Spectral Nanoanalysis by Amrastanov, A. N., Kuzin, A. Yu, Mityukhlyaev, V. B., Seregina, E. V., Stepovich, M. A., Todua, P. A., Filippov, M. N.

    Published in Measurement techniques (01-09-2017)
    “…An algorithm for estimating the temperature of local heating with an electron-probe low-voltage nanoanalysis is proposed. The approximation of the electron…”
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  15. 15

    Comparison of the Homologous SfeI and LlaBI Restriction-Modification Systems by Okhapkina, S S, Netesova, N A, Golikova, L N, Seregina, E V, Sosnovtsev, S V, Abdurashitov, M A, Degtyarev, S Kh

    Published in Molecular biology (New York) (01-05-2002)
    “…A fragment containing the SfeI restriction-modification system (RMS) operon was cloned from a Streptococcus faecalis SE72 plasmid. Nucleotide sequence analysis…”
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  16. 16

    Study of measles virus recombinant proteins and their immunobiological properties by Kulak, M. V., Netesova, N. A., Belavin, P. A., Seregina, E. V., Ignatyev, G. M.

    “…Recombinant proteins rN (nucleocapsid) and rH/Nh (hemagglutinin) of the measles virus strain NovO/96 of genotype A were obtained. The immunobiological…”
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  17. 17

    Evaluating the Surface Heating of a Homogeneous Metal Target Using an Electron Probe by Amrastanov, A. N., Seregina, E. V., Stepovich, M. A.

    “…The problem of heat distribution in metallic materials irradiated by sharply focused electron beams when there is no heat exchange between the target and the…”
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    On a modified projection scheme of the least-squares method for the modeling of the distribution of minority charge carriers generated by an electron beam in a homogeneous semiconductor material by Seregina, E. V., Stepovich, M. A., Makarenkov, A. M.

    “…A modified projection scheme of the least-squares method is considered for modeling of the distribution of minority charge carriers generated by an electron…”
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