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Publications in Math-Net.Ru |
Citations |
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2024 |
1. |
R. A. Brazwe, A. A. Grishina, “Quanta of the Righi–Leduc coefficients and magneto-thermal resistance”, University proceedings. Volga region. Physical and mathematical sciences, 2024, no. 1, 151–159 |
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2023 |
2. |
R. A. Brazwe, “The ratio of electron and phonon thermal conductivity in nanoscale conductors”, University proceedings. Volga region. Physical and mathematical sciences, 2023, no. 2, 68–76 |
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3. |
R. A. Brazwe, A. A. Grishina, “Seebeck, Peltier and Thomson coefficient quanta in nanoscale conductors”, University proceedings. Volga region. Physical and mathematical sciences, 2023, no. 2, 59–67 |
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4. |
R. A. Brazwe, “Quantum-dimensional insulators”, University proceedings. Volga region. Physical and mathematical sciences, 2023, no. 1, 115–127 |
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5. |
R. A. Brazwe, D. A. Dolgov, “Consideration of quantum-dimensional effects in designing plasmon-acoustic devices of the terahertz frequency range”, University proceedings. Volga region. Physical and mathematical sciences, 2023, no. 1, 85–92 |
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2020 |
6. |
R. A. Brazwe, D. A. Dolgov, “Transverse piezo- and pyroelectric effects in 2D nanoallotropes of boron nitride caused by the ripple formation”, Fizika Tverdogo Tela, 62:8 (2020), 1265–1269 ; Phys. Solid State, 62:8 (2020), 1421–1425 |
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2019 |
7. |
R. A. Brazwe, D. A. Dolgov, “Piezoelectric properties of 2D nanoallotropes of boron nitride”, Fizika Tverdogo Tela, 61:11 (2019), 2190–2194 ; Phys. Solid State, 61:11 (2019), 2167–2171 |
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2017 |
8. |
R. A. Brazwe, A. I. Kochaev, R. M. Meftakhutdinov, “Photoelastic properties of graphenes”, Fizika Tverdogo Tela, 59:2 (2017), 334–337 ; Phys. Solid State, 59:2 (2017), 344–347 |
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9. |
R. A. Brazwe, R. M. Meftakhutdinov, “Propagation of electromagnetic waves in conducting graphene-like carbon nanoallotropes”, Zhurnal Tekhnicheskoi Fiziki, 87:5 (2017), 762–765 ; Tech. Phys., 62:5 (2017), 781–784 |
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2016 |
10. |
R. A. Brazwe, A. I. Kochaev, “2D-crystals with five interatomic bonds of Kepler nets type”, University proceedings. Volga region. Physical and mathematical sciences, 2016, no. 1, 87–100 |
11. |
R. A. Brazwe, R. M. Meftakhutdinov, “Electronic and optical properties of carbon supracrystalline $sp^2$ nanoallotropes”, Zhurnal Tekhnicheskoi Fiziki, 86:5 (2016), 112–117 ; Tech. Phys., 61:5 (2016), 750–755 |
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2015 |
12. |
R. A. Brazwe, R. M. Meftakhutdinov, K. Kh. Fatkhutdinova, “Band structures of carbon and silicon 2D supracrystals”, University proceedings. Volga region. Physical and mathematical sciences, 2015, no. 1, 130–139 |
13. |
R. A. Brazwe, A. F. Savin, “Mathematical modeling of the coiled supracrystalline nanotubes”, University proceedings. Volga region. Physical and mathematical sciences, 2015, no. 1, 120–129 |
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2014 |
14. |
R. A. Brazwe, L. R. Shikhmuratova, “Mathematical modelling of suprafullerenes and suprafulleranes”, University proceedings. Volga region. Physical and mathematical sciences, 2014, no. 2, 159–168 |
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2013 |
15. |
R. A. Brazhe, V. S. Nefedov, “Mathematical model of transport phenomena in the planar and nanotubular supracrystalline structures”, Matem. Mod., 25:4 (2013), 83–95 |
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2011 |
16. |
R. A. Brazwe, A. A. Karenin, “Computer simulation of electrical properties of supracrystalline nanotubes”, University proceedings. Volga region. Physical and mathematical sciences, 2011, no. 3, 131–139 |
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17. |
R. A. Brazwe, A. A. Karenin, “Computer modeling of the physical properties of supracrystals”, University proceedings. Volga region. Physical and mathematical sciences, 2011, no. 2, 105–112 |
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18. |
R. A. Brazwe, A. I. Kochaev, “Method for searching for pure modes of elastic waves in crystals from 3D phase velocity surfaces”, University proceedings. Volga region. Physical and mathematical sciences, 2011, no. 1, 116–125 |
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2010 |
19. |
R. A. Brazwe, A. I. Kochaev, “A general method for searching for pure elastic wave modes in crystals”, University proceedings. Volga region. Physical and mathematical sciences, 2010, no. 3, 115–125 |
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2008 |
20. |
R. A. Brazwe, A. A. Elizarova, “Mathematical models of transition phenomena in the inverse gases”, Matem. Mod., 20:5 (2008), 110–118 ; Math. Models Comput. Simul., 1:2 (2009), 255–262 |
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2005 |
21. |
R. A. Brazwe, O. N. Kudelin, “Mathematical model of thermo-electro-hydrodynamic convention in semiconductors in the presence of charge carriers collisions”, Matem. Mod., 17:2 (2005), 109–118 |
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2024 |
22. |
R. A. Brazwe, A. A. Grishina, “Quanta of Ettingshausen and magnetothermoelectric coefficients”, University proceedings. Volga region. Physical and mathematical sciences, 2024, no. 2, 83–90 |
23. |
R. A. Brazwe, A. A. Grishina, “Quanta of nernst coefficients and thermomagnetic emf”, University proceedings. Volga region. Physical and mathematical sciences, 2024, no. 2, 74–82 |
24. |
R. A. Brazwe, “Quanta of linear heat capacity and linear thermal inductance in nanoscale heat-conducting pipes”, University proceedings. Volga region. Physical and mathematical sciences, 2024, no. 1, 138–150 |
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2023 |
25. |
R. A. Brazwe, A. A. Grishina, “Quanta of hall and magnetoresistance coefficients in electrically conductive nanoribbons”, University proceedings. Volga region. Physical and mathematical sciences, 2023, no. 4, 90–98 |
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2008 |
26. |
Е. И. Барыкина, R. A. Brazwe, “A mathematical model of the negative refraction of electromagnetic waves in an electrically conductive medium allowing the inversion of an electronic subsystem”, University proceedings. Volga region. Physical and mathematical sciences, 2008, no. 1, 102–109 |
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