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Results: 1 to 27 of 27 found      Go to page: 1

[1] Omer Angel, Alexander E. Holroyd, Gady Kozma, Johan Wästlund and Peter Winkler. The phase transition for dyadic tilings. Trans. Amer. Math. Soc. 366 (2014) 1029-1046.
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[2] Olga Holtz, Amos Ron and Zhiqiang Xu. Hierarchical zonotopal spaces. Trans. Amer. Math. Soc. 364 (2012) 745-766. MR 2846351.
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[3] V. G. Zhuravlev. Parametrization of a two-dimensional quasiperiodic Rauzy tiling. St. Petersburg Math. J. 22 (2011) 529-555. MR 2768960.
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[4] Wen-Guei Hu and Song-Sun Lin. Nonemptiness problems of plane square tiling with two colors. Proc. Amer. Math. Soc. 139 (2011) 1045-1059. MR 2745655.
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[5] Marian Neamtu. Delaunay configurations and multivariate splines: A generalization of a result of B. N. Delaunay. Trans. Amer. Math. Soc. 359 (2007) 2993-3004. MR 2299443.
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[6] Xing-Gang He. On the boundaries of self-similar tiles in $\mathbb{R}^1$. Proc. Amer. Math. Soc. 134 (2006) 3163-3170. MR 2231899.
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[7] Chuanming Zong. What is known about unit cubes. Bull. Amer. Math. Soc. 42 (2005) 181-211. MR 2133310.
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[8] Bojan Mohar. Light structures in infinite planar graphs without the strong isoperimetric property. Trans. Amer. Math. Soc. 354 (2002) 3059-3074. MR 1897390.
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[9] J. W. Cannon, W. J. Floyd and W. R. Parry. Finite subdivision rules. Conform. Geom. Dyn. 5 (2001) 153-196. MR 1875951.
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[10] Milé Krajčevski. Tilings of the plane, hyperbolic groups and small cancellation conditions. Memoirs of the AMS 154 (2001) MR 1848778.
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[11] Igor Pak. Ribbon tile invariants. Trans. Amer. Math. Soc. 352 (2000) 5525-5561. MR 1781275.
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[12] James A. Mingo. A classification of one dimensional almost periodic tilings arising from the projection method. Trans. Amer. Math. Soc. 352 (2000) 5263-5277. MR 1709776.
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[13] Dave Witte. Tessellations of solvmanifolds. Trans. Amer. Math. Soc. 350 (1998) 3767-3796. MR 1432206.
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[14] T. H. Marshall. Volume formulae for regular hyperbolic cubes. Conform. Geom. Dyn. 2 (1998) 25-28. MR 1600384.
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[15] Philip L. Bowers and Kenneth Stephenson. A ``regular'' pentagonal tiling of the plane. Conform. Geom. Dyn. 1 (1997) 58-86. MR 1479069.
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[16] Jeffrey C. Lagarias and Yang Wang. Nonnegative Radix Representations for the Orthant $R^n_+$. Trans. Amer. Math. Soc. 348 (1996) 99-117. MR 1333392.
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[17] Jeffrey C. Lagarias and Peter W. Shor. Keller's cube-tiling conjecture is false in high dimensions . Bull. Amer. Math. Soc. 27 (1992) 279-283. MR 1155280.
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[18] Sándor Szabó. Some problems on splittings of groups. II . Proc. Amer. Math. Soc. 101 (1987) 585-591. MR 911013.
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[19] S. Szabó. Rational tilings by $n$-dimensional crosses. II . Proc. Amer. Math. Soc. 93 (1985) 569-577. MR 776181.
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[20] Sándor Szabó. A symmetric star polyhedron that tiles but not as a fundamental domain . Proc. Amer. Math. Soc. 89 (1983) 563-566. MR 715888.
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[21] Marilyn Breen. Some tilings of the plane whose singular points form a perfect set . Proc. Amer. Math. Soc. 89 (1983) 477-479. MR 715870.
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[22] Sándor Szabó. Rational tilings by $n$-dimensional crosses . Proc. Amer. Math. Soc. 87 (1983) 213-222. MR 681824.
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[23] Allan L. Edmonds, John H. Ewing and Ravi S. Kulkarni. Torsion free subgroups of Fuchsian groups and tessellations of surfaces. Bull. Amer. Math. Soc. 6 (1982) 456-458. MR 648534.
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[24] A. J. W. Duijvestijn and P. Leeuw. Lowest order squared rectangles and squares with the largest element not on the boundary . Math. Comp. 37 (1981) 223-228. MR 616375.
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[25] Branko Grünbaum and G. C. Shephard. Tilings with congruent tiles. Bull. Amer. Math. Soc. 3 (1980) 951-973. MR 585178.
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[26] Branko Grünbaum and G. C. Shephard. Erratum to: ``The ninety-one types of isogonal tilings in the plane''\ (Trans. Amer. Math. Soc. {\bf 242} (1978), 335--353) . Trans. Amer. Math. Soc. 249 (1979) 446-446. MR 525684.
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[27] Branko Grünbaum and G. C. Shephard. The ninety-one types of isogonal tilings in the plane . Trans. Amer. Math. Soc. 242 (1978) 335-353. MR 496813.
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Results: 1 to 27 of 27 found      Go to page: 1