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Results: 31 to 51 of 51 found      Go to page: 1 2

[31] V. A. Malyshev. Cell structure of the space of real polynomials. St. Petersburg Math. J. 15 (2004) 191-248. MR 2052131.
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[32] Dmitry Khavinson and Grzegorz Swiatek. On the number of zeros of certain harmonic polynomials. Proc. Amer. Math. Soc. 131 (2003) 409-414. MR 1933331.
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[33] Yuri A. Alpin, Mao-Ting Chien and Lina Yeh. The numerical radius and bounds for zeros of a polynomial. Proc. Amer. Math. Soc. 131 (2003) 725-730. MR 1937409.
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[34] Branko Curgus and Vania Mascioni. On the location of critical points of polynomials. Proc. Amer. Math. Soc. 131 (2003) 253-264. MR 1929045.
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[35] Amir Dembo, Bjorn Poonen, Qi-Man Shao and Ofer Zeitouni. Random polynomials having few or no real zeros. J. Amer. Math. Soc. 15 (2002) 857-892. MR 1915821.
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[36] Michael J. Mossinghoff, Christopher G. Pinner and Jeffrey D. Vaaler. Perturbing polynomials with all their roots on the unit circle. Math. Comp. 67 (1998) 1707-1726. MR 1604387.
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[37] Dimitar K. Dimitrov. A refinement of the Gauss-Lucas theorem. Proc. Amer. Math. Soc. 126 (1998) 2065-2070. MR 1452801.
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[38] Ildar Ibragimov and Ofer Zeitouni. On roots of random polynomials. Trans. Amer. Math. Soc. 349 (1997) 2427-2441. MR 1390040.
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[39] Vilmos Totik and Joseph L. Ullman. Local asymptotic distribution of zeros of orthogonal polynomials . Trans. Amer. Math. Soc. 341 (1994) 881-894. MR 1150019.
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[40] Mourand E. H. Ismail and Xin Li. Bound on the extreme zeros of orthogonal polynomials . Proc. Amer. Math. Soc. 115 (1992) 131-140. MR 1079891.
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[41] Lieven Smits and Willem Kuyk. Winding number and the number of real zeros of a function . Proc. Amer. Math. Soc. 114 (1992) 981-987. MR 1054162.
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[42] Michael J. Miller. Maximal polynomials and the Ilieff-Sendov conjecture . Trans. Amer. Math. Soc. 321 (1990) 285-303. MR 965744.
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[43] Chi-Kwong Li. Polynomials and numerical ranges . Proc. Amer. Math. Soc. 104 (1988) 369-373. MR 962800.
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[44] Gary Harris and Clyde Martin. Large roots yield large coefficients. An addendum to: ``The roots of a polynomial vary continuously as a function of the coefficients'' [Proc.\ Amer.\ Math.\ Soc.\ {\bf 100} (1987), no.\ 2, 390--392; MR0884486 (88h:30006)] . Proc. Amer. Math. Soc. 102 (1988) 993-994. MR 934880.
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[45] Ken-iti Sato. On zeros of a system of polynomials and application to sojourn time distributions of birth-and-death processes . Trans. Amer. Math. Soc. 309 (1988) 375-390. MR 957077.
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[46] Gary Harris and Clyde Martin. The roots of a polynomial vary continuously as a function of the coefficients . Proc. Amer. Math. Soc. 100 (1987) 390-392. MR 884486.
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[47] Mike Hurley. Attracting orbits in Newton's method . Trans. Amer. Math. Soc. 297 (1986) 143-158. MR 849472.
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[48] Mau Hsiang Shih and Hann Tzong Wang. Unit lemniscates contained in the unit ball . Proc. Amer. Math. Soc. 86 (1982) 451-454. MR 671213.
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[49] J. S. Hwang. A problem on a geometric property of lemniscates . Proc. Amer. Math. Soc. 82 (1981) 390-392. MR 612726.
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[50] C. F. Gummer. The relative distribution of the real roots of a system of polynomials . Trans. Amer. Math. Soc. 23 (1922) 265-282. MR 1501202.
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[51] D. R. Curtiss. Extensions of Descartes' rule of signs connected with a problem suggested by Laguerre . Trans. Amer. Math. Soc. 16 (1915) 350-360. MR 1501017.
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Results: 31 to 51 of 51 found      Go to page: 1 2


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