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Erkimbaev, Adil'bek Omirbekovich

Statistics Math-Net.Ru
Total publications: 13
Scientific articles: 13

Number of views:
This page:180
Abstract pages:1633
Full texts:908
References:46
Candidate of technical sciences
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https://www.mathnet.ru/eng/person97018
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Publications in Math-Net.Ru Citations
2020
1. G. V. Belov, A. O. Erkimbaev, V. Yu. Zitserman, G. A. Kobzev, I. V. Morozov, “Experience of thermophysical database development using modern information technologies (review)”, TVT, 58:4 (2020),  615–633  mathnet  elib; High Temperature, 58:4 (2020), 566–582  isi  scopus 7
2012
2. A. V. Eletskii, A. O. Erkimbaev, V. Yu. Zitserman, G. A. Kobzev, M. S. Trakhtengerts, “Thermophysical properties of nanoobjects: Data classification and validity evaluation”, TVT, 50:4 (2012),  524–532  mathnet  elib; High Temperature, 50:4 (2012), 488–495  isi  elib  scopus 21
2010
3. A. O. Erkimbaev, V. Yu. Zitserman, G. A. Kobzev, “Systematization of data on the physical and chemical properties and application of carbon nanostructures”, TVT, 48:6 (2010),  869–876  mathnet; High Temperature, 48:6 (2010), 830–836  isi  scopus 10
1998
4. V. I. Artemov, G. G. Yan'kov, v. E. Karpov, A. O. Erkimbaev, “Analysis of models of high-temperature deformation and oxidation of fuel element claddings in emergency situation”, TVT, 36:4 (1998),  655–659  mathnet; High Temperature, 36:4 (1998), 631–635  isi
5. V. I. Artemov, G. G. Yan'kov, V. E. Karpov, A. O. Erkimbaev, “Analysis of models of high-temperature deformation and oxidation of fuel element claddings in emergency situations”, TVT, 36:3 (1998),  489–495  mathnet; High Temperature, 36:3 (1998), 465–471  isi
1995
6. A. O. Erkimbaev, A. M. Semenov, “Theoretical interpretation of the experimental dependences of the rate of pyrocarbon and diamond growth from the mixture of gaseous hydrocarbons on its composition”, TVT, 33:5 (1995),  721–725  mathnet; High Temperature, 33:5 (1995), 715–719  isi
1993
7. Kh. M. Agaev, A. O. Erkimbaev, N. Yu. Petrina, A. M. Semenov, “Kinetics of pyrocarbon film formation with a simultaneous growth of layers”, TVT, 31:4 (1993),  569–574  mathnet; High Temperature, 31:4 (1993), 518–523
8. A. O. Erkimbaev, A. M. Semenov, “The kinetic model of pyrocarbon formation from a mixture of material-forming gases”, TVT, 31:3 (1993),  499–502  mathnet; High Temperature, 31:3 (1993), 453–455
9. Kh. M. Agaev, I. V. Vinskovskaya, A. O. Erkimbaev, V. I. Mika, A. M. Semenov, “The stabilization of pyrocarbon layer growth for various models of crystallite formation”, TVT, 31:1 (1993),  64–68  mathnet; High Temperature, 31:1 (1993), 58–61
1992
10. A. O. Erkimbaev, A. M. Semenov, “Limited-growth model of crystalline grains for describing the kinetics of pyrocarbon formation. II. Numerical results”, TVT, 30:5 (1992),  929–935  mathnet; High Temperature, 30:5 (1992), 766–771  isi
11. A. O. Erkimbaev, A. M. Semenov, “Model of finite crystallite growth to describe the kinetics of formation of pyrolytic carbon. Kinetic equation”, TVT, 30:4 (1992),  720–725  mathnet; High Temperature, 30:4 (1992), 589–593  isi
1991
12. A. O. Erkimbaev, V. I. Mika, A. M. Semenov, “A model of independently growing crystallites for describing the kinetics of formation of pyrographite”, TVT, 29:4 (1991),  678–686  mathnet; High Temperature, 29:4 (1991), 527–533  isi  scopus
1986
13. A. O. Erkimbaev, A. M. Semenov, “Transfer-coefficients of monoatomic lithium and sodium vapors”, TVT, 24:6 (1986),  1090–1095  mathnet; High Temperature, 24:6 (1986), 798–803  isi

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