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Publications in Math-Net.Ru |
Citations |
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2016 |
1. |
V. G. Rechkalov, “Modeling of convection in the liquid drop by its evaporation using finite element method”, Vestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz., 8:1 (2016), 49–56 |
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2013 |
2. |
V. G. Rechkalov, V. P. Beskachko, “Simulation of experiments to measure surface tension by the shape of a drop surface at the existance of irregularity in its hanger or bearing”, Vestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz., 5:1 (2013), 88–94 |
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2010 |
3. |
V. L. Ushacov, G. P. Pyzin, V. G. Rechkalov, V. P. Beskachko, “The interferogram parameters evaluation required for the curvature radius determination at the top of the sessile drop”, Vestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz., 2010, no. 3, 95–100 |
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4. |
V. G. Rechkalov, V. L. Ushacov, G. P. Pyzin, V. P. Beskachko, “Computer-driven processing of the liquid drop shape image for determination of surface tension coefficient”, Vestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz., 2010, no. 3, 83–88 |
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2009 |
5. |
G. P. Pyzin, V. L. Ushakov, V. G. Rechkalov, V. P. Beskachko, “Determination of the radius of curvature in the vertice of sessile drop by interference patterns observation”, Vestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz., 2009, no. 1, 91–96 |
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6. |
G. P. Pyzin, V. L. Ushakov, V. G. Rechkalov, “The determination of the radius of curvature of water sessile drops in the process of the free evaporation by the interferometric method”, Vestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz., 2009, no. 1, 87–90 |
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