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[1] Szymon Głab, Pedro L. Kaufmann and Leonardo Pellegrini. Spaceability and algebrability of sets of nowhere integrable functions. Proc. Amer. Math. Soc. 141 (2013) 2025-2037.
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[2] Tonći Antunović, Yuval Peres and Brigitta Vermesi. Brownian motion with variable drift can be space filling. Proc. Amer. Math. Soc. 139 (2011) 3359-3373. MR 2811290.
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[3] M. V. Prats’ovytyĭ and D. V. Kyurchev. Singularity of the distribution of a random variable represented by an $A_{2}$-continued fraction with independent elements. Theor. Probability and Math. Statist. 81 (2010) 159-175.
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[4] V. Yu. Protasov. Spectral factorization of 2-block Toeplitz matrices and refinement equations. St. Petersburg Math. J. 18 (2007) 607-646. MR 2262586.
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[5] M. V. Prats'ovytyi and O. M. Baranovs'kii. Properties of distributions of random variables with independent differences of consecutive elements of the Ostrogradskii series. Theor. Probability and Math. Statist. 70 (2005) 147-160. MR 2110871.
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[6] E. A. Gorin and B. N. Kukushkin. Integrals related to the Cantor function. St. Petersburg Math. J. 15 (2004) 449-468. MR 2052168.
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[7] Yuval Peres and Boris Solomyak. Self-similar measures and intersections of Cantor sets. Trans. Amer. Math. Soc. 350 (1998) 4065-4087. MR 1491873.
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[8] R. Daniel Mauldin and Károly Simon. The equivalence of some Bernoulli convolutions to Lebesgue measure. Proc. Amer. Math. Soc. 126 (1998) 2733-2736. MR 1458276.
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[9] Brian R. Hunt. The Hausdorff dimension of graphs of Weierstrass functions. Proc. Amer. Math. Soc. 126 (1998) 791-800. MR 1452806.
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[10] Stéphane Jaffard and Yves Meyer. Wavelet methods for pointwise regularity and local oscillations of functions. Memoirs of the AMS 123 (1996) MR 1342019.
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[11] Richard Darst. The Hausdorff dimension of the nondifferentiability set of the Cantor function is $[{\rm ln}(2)/{\rm ln}(3)]\sp 2$ . Proc. Amer. Math. Soc. 119 (1993) 105-108. MR 1143222.
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[12] Zbigniew Grande. Some remarks about Rosen's functions . Proc. Amer. Math. Soc. 113 (1991) 117-122. MR 1052574.
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[13] M. Urbański. The Hausdorff dimension of the graphs of continuous self-affine functions . Proc. Amer. Math. Soc. 108 (1990) 921-930. MR 1000169.
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[14] Sylvester Reese. Some Fourier-Stieltjes coefficients revisited . Proc. Amer. Math. Soc. 105 (1989) 384-386. MR 938913.
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[15] G. Ramharter. On Minkowski's singular function . Proc. Amer. Math. Soc. 99 (1987) 596-597. MR 875407.
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[16] I. Kan. A chaotic function possessing a scrambled set with positive Lebesgue measure . Proc. Amer. Math. Soc. 92 (1984) 45-49. MR 749887.
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[17] J. Smítal. A chaotic function with a scrambled set of positive Lebesgue measure . Proc. Amer. Math. Soc. 92 (1984) 50-54. MR 749888.
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[18] Bau Sen Du. A chaotic function whose nonwandering set is the Cantor ternary set . Proc. Amer. Math. Soc. 92 (1984) 277-278. MR 754720.
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[19] F. S. Cater. When total variation is additive . Proc. Amer. Math. Soc. 84 (1982) 504-508. MR 643738.
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[20] Gadi Moran. Of regulated and steplike functions . Trans. Amer. Math. Soc. 231 (1977) 249-257. MR 0499028.
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[21] J. F. Ritt. Real functions with algebraic addition theorems . Trans. Amer. Math. Soc. 29 (1927) 361-368. MR 1501393.
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[22] Eliakim Hastings Moore. On certain crinkly curves . Trans. Amer. Math. Soc. 1 (1900) 72-90. MR 1500526.
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[23] Eliakim Hastings Moore. Errata: ``On certain crinkly curves'' [Trans.\ Amer.\ Math.\ Soc. {\bf 1} (1900), no. 1, 72--90; 1500526] . Trans. Amer. Math. Soc. 1 (1900) 507. MR 1500428.
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Results: 1 to 23 of 23 found      Go to page: 1


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