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Publications in Math-Net.Ru |
Citations |
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2022 |
1. |
N. N. Dobrovol'skii, S. A. Skobel'tsyn, L. A. Tolokonnikov, N. V. Larin, “Application of number-theoretic grids in problems of sound diffraction by elastic bodies”, Chebyshevskii Sb., 23:5 (2022), 206–226 |
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2021 |
2. |
N. N. Dobrovol'skii, S. A. Skobel'tsyn, L. A. Tolokonnikov, N. V. Larin, “About application of number-theoretic grids in problems of acoustics”, Chebyshevskii Sb., 22:3 (2021), 368–382 |
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3. |
L. A. Tolokonnikov, N. V. Larin, “Scattering by a cylinder with an inhomogeneous coating of sound waves emitted by a linear source in a plane waveguide”, Matem. Mod., 33:8 (2021), 97–113 ; Math. Models Comput. Simul., 14:2 (2022), 250–260 |
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2019 |
4. |
N. N. Dobrovol'skii, N. V. Larin, S. A. Skobel'tsyn, L. A. Tolokonnikov, “About solutions of inverse problems sound waves diffraction”, Chebyshevskii Sb., 20:3 (2019), 220–245 |
5. |
N. V. Larin, L. A. Tolokonnikov, “Sound scattering by the thermoelastic continuously-inhomogeneous covered sphere in heat-conducting fluid”, Matem. Mod., 31:5 (2019), 20–38 ; Math. Models Comput. Simul., 11:6 (2019), 1007–1018 |
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2018 |
6. |
N. V. Larin, “Diffraction of a plane sound wave on a thermoelastic sphere with a discretely inhomogeneous coating”, Prikl. Mekh. Tekh. Fiz., 59:6 (2018), 65–74 ; J. Appl. Mech. Tech. Phys., 59:6 (2018), 1015–1023 |
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2017 |
7. |
L. A. Tolokonnikov, N. V. Larin, S. A. Skobel'tsyn, “Modelling of inhomogeneous coating of an elastic sphere with demanded sound-reflecting properties”, Matem. Mod., 29:11 (2017), 89–98 ; Math. Models Comput. Simul., 10:3 (2018), 333–340 |
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8. |
L. A. Tolokonnikov, N. V. Larin, S. A. Skobel'tsyn, “Modeling of an inhomogeneous coating of an elastic cylinder with given sound-reflecting properties”, Prikl. Mekh. Tekh. Fiz., 58:4 (2017), 189–199 ; J. Appl. Mech. Tech. Phys., 58:4 (2017), 733–742 |
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9. |
L. A. Tolokonnikov, N. V. Larin, “Passage of sound through a discretely inhomogeneous thermoelastic à plane layer adjacent to heat-conducting liquids”, Prikl. Mekh. Tekh. Fiz., 58:1 (2017), 108–116 ; J. Appl. Mech. Tech. Phys., 58:1 (2017), 95–102 |
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