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[1] Dinesh S. Thakur.
Higher diophantine approximation exponents and continued fraction symmetries for function fields II.
Proc. Amer. Math. Soc.
141
(2013)
2603-2608.
Abstract, references, and article information
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[2] Alex Kontorovich.
From Apollonius to Zaremba: Local-global phenomena in thin orbits.
Bull. Amer. Math. Soc.
50
(2013)
187-228.
Abstract, references, and article information
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[3] Dinesh S. Thakur.
Higher diophantine approximation exponents and continued fraction symmetries for function fields.
Proc. Amer. Math. Soc.
139
(2011)
11-19.
MR 2729066.
Abstract, references, and article information
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[4] Jens Marklof, Yves Tourigny and Lech Wolowski.
Explicit invariant measures for products of random matrices.
Trans. Amer. Math. Soc.
360
(2008)
3391-3427.
MR 2386231.
Abstract, references, and article information
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[5] Edward B. Burger and Ashok M. Pillai.
On diophantine approximation along algebraic curves.
Proc. Amer. Math. Soc.
136
(2008)
11-19.
MR 2350383.
Abstract, references, and article information
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[6] Pascal Hubert and Thomas A. Schmidt.
Geometry of infinitely generated Veech groups.
Conform. Geom. Dyn.
10
(2006)
1-20.
MR 2192855.
Abstract, references, and article information
View Article: PDF
[7] Jun Wu.
On the Lévy constants for quadratic irrationals.
Proc. Amer. Math. Soc.
134
(2006)
1631-1634.
MR 2204273.
Abstract, references, and article information
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[8] Takao Komatsu.
An algorithm of infinite sums representations and Tasoev continued fractions.
Math. Comp.
74
(2005)
2081-2094.
MR 2164115.
Abstract, references, and article information
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[9] Yitwah Cheung.
Slowly divergent geodesics in moduli space.
Conform. Geom. Dyn.
8
(2004)
167-189.
MR 2122525.
Abstract, references, and article information
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[10] Zhuan Ye.
An analogue of continued fractions in number theory for Nevanlinna theory.
Trans. Amer. Math. Soc.
356
(2004)
4829-4838.
MR 2084400.
Abstract, references, and article information
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[11] L. Ya. Vulakh.
Units in some families of algebraic number fields.
Trans. Amer. Math. Soc.
356
(2004)
2325-2348.
MR 2048520.
Abstract, references, and article information
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[12] Andrew Haas and David Molnar.
Metrical diophantine approximation for continued fraction like maps of the interval.
Trans. Amer. Math. Soc.
356
(2004)
2851-2870.
MR 2052599.
Abstract, references, and article information
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[13] A. J. van der Poorten, H. J. J. te Riele and H. C. Williams.
Corrigenda and addition to ``Computer verification of the Ankeny-Artin-Chowla
conjecture for all primes less than $100000000000$''.
Math. Comp.
72
(2003)
521-523.
MR 1933835.
Abstract, references, and article information
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[14] J. Berkovits and J. Mawhin.
Diophantine approximation, Bessel functions and radially symmetric periodic solutions of semilinear wave equations in a ball.
Trans. Amer. Math. Soc.
353
(2001)
5041-5055.
MR 1852093.
Abstract, references, and article information
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[15] S. Astels.
Sums of numbers with small partial quotients.
Proc. Amer. Math. Soc.
130
(2002)
637-642.
MR 1866013.
Abstract, references, and article information
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[16] Jerzy Browkin.
Continued fractions in local fields, II.
Math. Comp.
70
(2001)
1281-1292.
MR 1826582.
Abstract, references, and article information
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[17] A. J. van der Poorten, H. J. J. te Riele and H. C. Williams.
Computer verification of the Ankeny--Artin--Chowla Conjecture
for all primes less than $100000000000$.
Math. Comp.
70
(2001)
1311-1328.
MR 1709160.
Abstract, references, and article information
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[18] Robert M. Burton, Cornelis Kraaikamp and Thomas A. Schmidt.
Natural extensions for the Rosen fractions.
Trans. Amer. Math. Soc.
352
(2000)
1277-1298.
MR 1650073.
Abstract, references, and article information
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[19] Karlheinz Gröchenig and Andrew Haas.
Invariant measures for certain linear fractional transformations mod 1.
Proc. Amer. Math. Soc.
127
(1999)
3439-3444.
MR 1622738.
Abstract, references, and article information
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[20] S. Astels.
Cantor sets and numbers with restricted partial quotients.
Trans. Amer. Math. Soc.
352
(2000)
133-170.
MR 1491854.
Abstract, references, and article information
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[21] Francis Edward Su.
Convergence of random walks on the circle generated by an irrational
rotation.
Trans. Amer. Math. Soc.
350
(1998)
3717-3741.
MR 1467478.
Abstract, references, and article information
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[22] E. A. Coutsias and N. D. Kazarinoff.
The approximate functional formula for the theta function and
Diophantine Gauss sums.
Trans. Amer. Math. Soc.
350
(1998)
615-641.
MR 1443869.
Abstract, references, and article information
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[23] T. N. Langtry.
An application of Diophantine approximation to the construction of rank-1 lattice quadrature rules.
Math. Comp.
65
(1996)
1635-1662.
MR 1351203.
Abstract, references, and article information
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[24] Kenneth S. Williams and Nicholas Buck.
Comparison of the lengths of the continued
fractions of $\sqrt D$ and $\frac12(1+\sqrt D)$
.
Proc. Amer. Math. Soc.
120
(1994)
995-1002.
MR 1169053.
Abstract, references, and article information
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[25] T. W. Cusick.
Zaremba's conjecture and sums of the divisor
function
.
Math. Comp.
61
(1993)
171-176.
MR 1189517.
Abstract, references, and article information
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[26] Cor Kraaikamp and Pierre Liardet.
Good approximations and continued fractions
.
Proc. Amer. Math. Soc.
112
(1991)
303-309.
MR 1062392.
Abstract, references, and article information
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[27] Wieb Bosma.
Approximation by mediants
.
Math. Comp.
54
(1990)
421-434.
MR 995207.
Abstract, references, and article information
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[28] R. M. Hovstad.
The classical irrationality problem for
$T$-fractions
.
Proc. Amer. Math. Soc.
110
(1990)
65-70.
MR 1017002.
Abstract, references, and article information
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[29] Jing Cheng Tong.
The conjugate property for Diophantine
approximation of continued fractions
.
Proc. Amer. Math. Soc.
105
(1989)
535-539.
MR 937852.
Abstract, references, and article information
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[30] Gerhard Larcher.
A convergence problem connected with continued
fractions
.
Proc. Amer. Math. Soc.
103
(1988)
718-722.
MR 947645.
Abstract, references, and article information
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