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Publications in Math-Net.Ru |
Citations |
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2019 |
1. |
V. V. Andreev, N. V. Maksimenko, O. M. Deryuzhkova, “Speenless particle motion equations in the electromagnetic field considering dipole polarizability”, PFMT, 2019, no. 1(38), 13–15 |
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2018 |
2. |
E. V. Vakulina, N. V. Maksimenko, “Amplitude of computon scattering on hadrons of spin $1$ with account of spin polarizables”, PFMT, 2018, no. 1(34), 20–23 |
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2014 |
3. |
V.V.Andreev, O. M. Deryuzhkova, N. V. Maksimenko, “The covariant representation spin polarizability of the nucleon”, PFMT, 2014, no. 3(20), 7–12 |
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2013 |
4. |
E. V. Vakulina, N. V. Maksimenko, “Polarizability of the pion in the formalism of Duffin–Kemmer”, PFMT, 2013, no. 3(16), 16–18 |
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2011 |
5. |
V. V. Andreev, N. V. Maksimenko, “Polarizability of elementary particles in the theoretical-field approach”, PFMT, 2011, no. 4(9), 7–11 |
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2010 |
6. |
N. V. Maksimenko, A. S. Kurilin, S. V. Podolsky, V. V. Andreev, A. A. Yuchko, K. S. Babich, Yu. Yu. Stepanenko, “New method for the cuts threshold optimization in the E391 experiment: conception and current implementation”, PFMT, 2010, no. 3(4), 22–24 |
7. |
N. V. Maksimenko, S. M. Kuchin, “Spectral problem of the Klein-Gordon-Fock equation”, PFMT, 2010, no. 2(3), 7–9 |
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2009 |
8. |
E. A. Rudak, N. V. Maksimenko, V. V. Andreev, O. I. Yachnik, “The use of correlation relations for determination of fuel and condensation components in Chernobyl radioactive sediment”, PFMT, 2009, no. 1(1), 27–32 |
9. |
N. V. Maksimenko, “Low-energy Compton scattering and poilarizabilities of hadrons”, PFMT, 2009, no. 1(1), 9–14 |
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Organisations |
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