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Publications in Math-Net.Ru |
Citations |
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2020 |
1. |
L. Miao, Yu. M. Grishin, “Analysis of parameters of an rf inductively coupled plasma torch and dispersed flow of vaporized quartz particles”, Zhurnal Tekhnicheskoi Fiziki, 90:7 (2020), 1068–1075 ; Tech. Phys., 65:7 (2020), 1024–1031 |
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2. |
Yu. M. Grishin, L. Miao, “Numerical simulation of the evaporation process of monodispersed quartz particles in an argon plasma flow of induction plasmatron”, TVT, 58:1 (2020), 3–14 ; High Temperature, 58:1 (2020), 1–11 |
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2016 |
3. |
Yu. M. Grishin, N. P. Kozlov, A. S. Skryabin, “Efficiency of the plasma-chemical method of preparation of silicon from quartz in an argon-hydrogen flow”, TVT, 54:5 (2016), 655–662 ; High Temperature, 54:5 (2016), 619–626 |
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2012 |
4. |
Yu. M. Grishin, N. P. Kozlov, A. S. Skryabin, “Experimental study of the plasmochemical method for the direct production of silicon from quartz”, TVT, 50:4 (2012), 491–495 ; High Temperature, 50:4 (2012), 459–463 |
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2007 |
5. |
L. A. Borisov, Yu. M. Grishin, E. N. Gulin, A. D. Kairyak, N. P. Kozlov, M. V. Kutyrev, “Studies into the modification of the composition of impurities of natural quartz particles in a dispersed plasma flow”, TVT, 45:5 (2007), 777–781 ; High Temperature, 45:5 (2007), 708–712 |
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1998 |
6. |
Yu. M. Grishin, N. P. Kozlov, V. V. Kuznetsov, “Singularities of spectral-brightness characteristics of pulsed radiating surface discharges in dense gases”, TVT, 36:2 (1998), 187–193 ; High Temperature, 36:2 (1998), 169–175 |
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1994 |
7. |
Yu. M. Grishin, N. P. Kozlov, V. V. Kuzenov, “A modification of Glimm's method for solving the equations of gas
dynamics”, Zh. Vychisl. Mat. Mat. Fiz., 34:11 (1994), 1729–1732 ; Comput. Math. Math. Phys., 34:11 (1994), 1489–1491 |
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