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Publications in Math-Net.Ru |
Citations |
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2018 |
1. |
N. V. Shikina, E. V. Bessudnova, V. A. Ushakov, A. P. Nikitin, M. S. Mel'gunov, A. V. Ishchenko, Z. R. Ismagilov, “Effect of ce cations on the crystallite size and pore structure genesis in nanostructured rutile after calcination”, Nanosystems: Physics, Chemistry, Mathematics, 9:5 (2018), 688–695 |
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2017 |
2. |
A. V. Kalenskii, N. V. Gazenaur, A. A. Zvekov, A. P. Nikitin, “Critical conditions of reaction initiation in the petn during laser heating of light-absorbing nanoparticles”, Fizika Goreniya i Vzryva, 53:2 (2017), 107–117 ; Combustion, Explosion and Shock Waves, 53:2 (2017), 219–228 |
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3. |
A. V. Kalenskii, A. A. Zvekov, M. V. Ananyeva, A. P. Nikitin, B. P. Aduev, “Effect of multiple scattering on the critical density of the energy of the PETN – aluminium compound initiated by a neodymium laser pulse”, Fizika Goreniya i Vzryva, 53:1 (2017), 92–104 ; Combustion, Explosion and Shock Waves, 53:1 (2017), 82–92 |
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2016 |
4. |
B. P. Aduev, D. R. Nurmuhametov, A. A. Zvekov, A. P. Nikitin, A. V. Kalenskii, “Laser initiation of PETN-based composites with inclusions of ultrafine aluminium particles”, Fizika Goreniya i Vzryva, 52:6 (2016), 104–110 ; Combustion, Explosion and Shock Waves, 52:6 (2016), 713–718 |
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5. |
B. P. Aduev, D. R. Nurmuhametov, N. V. Nel’ubina, R. Yu. Kovalyov, A. P. Nikitin, A. N. Zaostrovskii, Z. R. Ismagilov, “Laser initiation of PETN-based compositions with submicron coal particles”, Fizika Goreniya i Vzryva, 52:5 (2016), 108–115 ; Combustion, Explosion and Shock Waves, 52:5 (2016), 593–599 |
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2014 |
6. |
A. A. Zvekov, A. V. Kalenskii, A. P. Nikitin, B. P. Aduev, “Radiance distribution simulation in a transparent medium with Fresnel boundaries containing aluminum nanoparticles”, Computer Optics, 38:4 (2014), 749–756 |
7. |
B. P. Aduev, M. V. Ananyeva, A. A. Zvekov, A. V. Kalenskii, V. G. Kriger, A. P. Nikitin, “Miro-hotspot model for the laser initiation of explosive decomposition of energetic materials with melting taken into account”, Fizika Goreniya i Vzryva, 50:6 (2014), 92–99 ; Combustion, Explosion and Shock Waves, 50:6 (2014), 704–710 |
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