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Publications in Math-Net.Ru |
Citations |
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2024 |
1. |
M. A. Komarov, “Density of simple partial fractions with poles on the circle in weighted spaces for the disk and the interval”, Vestnik of Saint Petersburg University. Mathematics. Mechanics. Astronomy, 11:1 (2024), 96–107 |
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2023 |
2. |
M. A. Komarov, “Rate of interpolation of analytic functions with regularly decreasing coefficients by simple partial fractions”, Izv. Saratov Univ. Math. Mech. Inform., 23:2 (2023), 157–168 |
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2022 |
3. |
M. A. Komarov, “On the Reverse Dzyadyk Inequality for Polynomials with Zeros on a Closed Interval”, Mat. Zametki, 112:6 (2022), 941–946 ; Math. Notes, 112:6 (2022), 1065–1070 |
4. |
M. A. Komarov, “On Borwein's identity and weighted Turán type inequalities on a closed interval”, Trudy Inst. Mat. i Mekh. UrO RAN, 28:1 (2022), 127–138 |
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2021 |
5. |
M. A. Komarov, “Rational approximations of Lipschitz functions from the Hardy class on the line”, Probl. Anal. Issues Anal., 10(28):2 (2021), 54–66 |
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6. |
M. A. Komarov, “Convergence rate of one class of differentiating sums”, Ufimsk. Mat. Zh., 13:4 (2021), 42–50 ; Ufa Math. J., 13:4 (2021), 41–49 |
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2020 |
7. |
M. A. Komarov, “On the rate of approximation in the unit disc of $H^1$-functions by logarithmic derivatives of polynomials with zeros on the boundary”, Izv. RAN. Ser. Mat., 84:3 (2020), 3–14 ; Izv. Math., 84:3 (2020), 437–448 |
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2019 |
8. |
M. A. Komarov, “A lower bound for the $L_2[-1,\,1]$-norm of the logarithmic derivative of polynomials with zeros on the unit circle”, Probl. Anal. Issues Anal., 8(26):2 (2019), 67–72 |
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2018 |
9. |
M. A. Komarov, “On approximation by special differences of simplest fractions”, Algebra i Analiz, 30:4 (2018), 47–60 ; St. Petersburg Math. J., 30:4 (2019), 655–665 |
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10. |
V. I. Danchenko, M. A. Komarov, P. V. Chunaev, “Extremal and approximative properties of simple partial fractions”, Izv. Vyssh. Uchebn. Zaved. Mat., 2018, no. 12, 9–49 ; Russian Math. (Iz. VUZ), 62:12 (2018), 6–41 |
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11. |
M. A. Komarov, “Approximation by linear fractional transformations of simple partial fractions and their differences”, Izv. Vyssh. Uchebn. Zaved. Mat., 2018, no. 3, 29–40 ; Russian Math. (Iz. VUZ), 62:3 (2018), 23–33 |
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12. |
M. A. Komarov, “Estimates of the Best Approximation of Polynomials by Simple Partial Fractions”, Mat. Zametki, 104:6 (2018), 851–862 ; Math. Notes, 104:6 (2018), 848–858 |
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13. |
M. A. Komarov, “On approximation of the rational functions, whose integral is single-valued on $\mathbb{C}$, by differences of simplest fractions”, Probl. Anal. Issues Anal., 7(25):special issue (2018), 63–71 |
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2017 |
14. |
M. A. Komarov, “A criterion for the best uniform approximation by simple partial fractions in terms of alternance. II”, Izv. RAN. Ser. Mat., 81:3 (2017), 109–133 ; Izv. Math., 81:3 (2017), 568–591 |
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2015 |
15. |
M. A. Komarov, “A criterion for the best uniform approximation by simple partial fractions in terms of alternance”, Izv. RAN. Ser. Mat., 79:3 (2015), 3–22 ; Izv. Math., 79:3 (2015), 431–448 |
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16. |
M. A. Komarov, “Best Approximation Rate of Constants by Simple Partial Fractions and Chebyshev Alternance”, Mat. Zametki, 97:5 (2015), 718–732 ; Math. Notes, 97:5 (2015), 725–737 |
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2014 |
17. |
M. A. Komarov, “A criterion for the solvability of the multiple interpolation problem by simple partial fractions”, Sibirsk. Mat. Zh., 55:4 (2014), 750–763 ; Siberian Math. J., 55:4 (2014), 611–621 |
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2013 |
18. |
M. A. Komarov, “An example of nonuniqueness of a simple partial fraction of the best uniform approximation”, Izv. Vyssh. Uchebn. Zaved. Mat., 2013, no. 9, 28–37 ; Russian Math. (Iz. VUZ), 57:9 (2013), 22–30 |
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19. |
M. A. Komarov, “A Criterion for the Best Approximation of Constants by Simple Partial Fractions”, Mat. Zametki, 93:2 (2013), 209–215 ; Math. Notes, 93:2 (2013), 250–256 |
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2011 |
20. |
M. A. Komarov, “Structure of the local controllability set for a family of $2$-systems on a plane near the zero indicatrix point”, CMFD, 42 (2011), 134–151 ; Journal of Mathematical Sciences, 199:6 (2014), 667–686 |
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2008 |
21. |
M. A. Komarov, “Local controllability in generic two-parameter families of bidynamical systems on the plane”, Uspekhi Mat. Nauk, 63:2(380) (2008), 169–170 ; Russian Math. Surveys, 63:2 (2008), 366–368 |
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22. |
A. A. Davydov, M. A. Komarov, “Local Controllability Bifurcations in Families of Bidynamical Systems on the Plane”, Trudy Mat. Inst. Steklova, 261 (2008), 87–96 ; Proc. Steklov Inst. Math., 261 (2008), 84–93 |
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