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Publications in Math-Net.Ru |
Citations |
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2023 |
1. |
V. S. Dozhdikov, A. Yu. Basharin, P. R. Levashov, “Structure studies of graded amorphous carbon obtained by liquid carbon quenching”, Zhurnal Tekhnicheskoi Fiziki, 93:3 (2023), 339–349 |
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2021 |
2. |
V. S. Dozhdikov, A. Yu. Basharin, P. R. Levashov, “Quenching of liquid carbon on the surface of a diamond substrate”, TVT, 59:5 (2021), 755–761 ; High Temperature, 60:1, Suppl. 2 (2022), S248–S254 |
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2012 |
3. |
A. Yu. Basharin, I. Yu. Lysenko, M. A. Turchaninov, “Carbon alloy formation during graphite pulse laser melting in a medium with pressure of $\sim10$ MPa”, TVT, 50:4 (2012), 496–503 ; High Temperature, 50:4 (2012), 464–470 |
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2004 |
4. |
A. Yu. Basharin, M. V. Brykin, M. Yu. Marin, I. S. Pakhomov, S. F. Sitnikov, “Methods of increasing the measurement accuracy during the experimental determination of the melting point of graphite”, TVT, 42:1 (2004), 64–71 ; High Temperature, 42:1 (2004), 60–67 |
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1986 |
5. |
A. Yu. Basharin, O. I. Osipov, “Исследование изменения температуры поверхности металлоизделий при лазерном нагреве”, TVT, 24:3 (1986), 612–614 |
6. |
A. Yu. Basharin, A. V. Kirillin, M. A. Sheindlin, L. M. Heyfetz, “Optical characteristics of laser-heated graphite materials”, TVT, 24:1 (1986), 76–81 ; High Temperature, 24:1 (1986), 69–74 |
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1984 |
7. |
A. Yu. Basharin, A. V. Kirillin, M. A. Sheindlin, “Method of experimental investigation of the optical characteristics of refractory materials at very high-temperature”, TVT, 22:1 (1984), 131–137 ; High Temperature, 22:1 (1984), 120–125 |
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