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[1] Luc Hillairet and Alexey Kokotov. Isospectrality, comparison formulas for determinants of Laplacian and flat metrics with non-trivial holonomy. Proc. Amer. Math. Soc. 145 (2017) 3915-3928.
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[2] Samuel L. Krushkal. Complex geodesics and variational calculus for univalent functions. Contemporary Mathematics 699 (2017) 175-197.
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[3] Hideki Miyachi. Extremal length functions are log-plurisubharmonic. Contemporary Mathematics 696 (2017) 225-250.
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[4] Jane Gilman and Linda Keen. Winding and unwinding and essential intersections in $\mathbb{H}^3$. Contemporary Mathematics 696 (2017) 125-138.
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[5] Gendi Wang and Matti Vuorinen. The visual angle metric and quasiregular maps. Proc. Amer. Math. Soc. 144 (2016) 4899-4912.
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[6] David A. Herron. Universal convexity for quasihyperbolic type metrics. Conform. Geom. Dyn. 20 (2016) 1-24.
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[7] D. Kh. Djumabaev. Holomorphic continuation of functions in the domains with singular boundaries. Contemporary Mathematics 662 (2016) 107-115.
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[8] Maxime Fortier Bourque. Conformal grafting and convergence of Fenchel-Nielsen twist coordinates. Conform. Geom. Dyn. 19 (2015) 1-18.
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[9] Edward Crane. Intrinsic circle domains. Conform. Geom. Dyn. 18 (2014) 65-84.
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[10] Kimiyo N. Yamamoto and Masahiko Taniguchi. Cross ratio coordinates for the deformation spaces of a marked M\"obius group. Conform. Geom. Dyn. 17 (2013) 145-154.
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[11] Dimitrios Betsakos. Hyperbolic geometric versions of Schwarz's lemma. Conform. Geom. Dyn. 17 (2013) 119-132.
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[12] Riku Klén. Local convexity properties of balls in Apollonian and Seittenranta's metrics. Conform. Geom. Dyn. 17 (2013) 133-144.
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[13] Juan Souto and Matthew Stover. A Cantor set with hyperbolic complement. Conform. Geom. Dyn. 17 (2013) 58-67.
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[14] A. F. Beardon. Length inequalities for Riemann surfaces. Proc. Amer. Math. Soc. 141 (2013) 2699-2702.
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[15] Ian Short. Conformal automorphisms of countably connected regions. Conform. Geom. Dyn. 17 (2013) 1-5.
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[16] Zair Ibragimov. Hyperbolization of locally compact non-complete metric spaces. Contemporary Mathematics 590 (2013) 51-59.
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[17] Yuki Iguchi. Lines of minima with no end in Thurston's boundary of Teichm\"{u}ller space. Conform. Geom. Dyn. 16 (2012) 22-43.
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[18] Nikola Lakic and Greg Markowsky. The rate of convergence of the hyperbolic density on sequences of domains.. Contemporary Mathematics 573 (2012) 147-157.
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[19] Ian Short. Hausdorff dimension of sets of divergence arising from continued fractions. Proc. Amer. Math. Soc. 140 (2012) 1371-1385. MR 2869121.
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[20] Loïc Dubois and Hans Henrik Rugh. A uniform contraction principle for bounded Apollonian embeddings. Conform. Geom. Dyn. 15 (2011) 64-71. MR 2833473.
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[21] Zair Ibragimov. Hyperbolizing metric spaces. Proc. Amer. Math. Soc. 139 (2011) 4401-4407. MR 2823085.
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[22] Patrice Rivard. A Schwarz–Pick Theorem for higher-order hyperbolic derivatives. Proc. Amer. Math. Soc. 139 (2011) 209-217. MR 2729084.
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[23] Petra Bonfert-Taylor and Edward C. Taylor. Quasiconformally homogeneous planar domains. Conform. Geom. Dyn. 12 (2008) 188-198. MR 2461511.
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[24] Stephen M. Buckley and Simon L. Kokkendorff. Comparing the Floyd and ideal boundaries of a metric space. Trans. Amer. Math. Soc. 361 (2009) 715-734. MR 2452822.
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[25] David A. Herron, William Ma and David Minda. Möbius invariant metrics bilipschitz equivalent to the hyperbolic metric. Conform. Geom. Dyn. 12 (2008) 67-96. MR 2410919.
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[26] Dragomir Saric. Bounded earthquakes. Proc. Amer. Math. Soc. 136 (2008) 889-897. MR 2361861.
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[27] Alexander Yu. Solynin. Mapping properties of analytic functions on the unit disk. Proc. Amer. Math. Soc. 136 (2008) 577-585. MR 2358498.
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[28] Oliver Roth. A general conformal geometric reflection principle. Trans. Amer. Math. Soc. 359 (2007) 2501-2529. MR 2286042.
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[29] J. W. Cannon, W. J. Floyd and W. R. Parry. Expansion complexes for finite subdivision rules. II. Conform. Geom. Dyn. 10 (2006) 326-354. MR 2268483.
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[30] Alexander Yu. Solynin. Hyperbolic convexity and the analytic fixed point function. Proc. Amer. Math. Soc. 135 (2007) 1181-1186. MR 2262924.
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Results: 1 to 30 of 60 found      Go to page: 1 2

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