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[1] Itaï Ben Yaacov, Tomás Ibarlucía and Todor Tsankov. Eberlein oligomorphic groups. Trans. Amer. Math. Soc. 370 (2018) 2181-2209.
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[2] Maria Vicenta Ferrer, Salvador Hernández and Dmitri Shakhmatov. A countable free closed non-reflexive subgroup of $\mathbb{Z}^{\mathfrak{c}}$. Proc. Amer. Math. Soc. 145 (2017) 3599-3605.
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[3] Bertin Diarra and Tongobè Mounkoro. Ultrametric continuous linear representations of the compact groups $SL(2, \mathbb{Z}_p)$ and $GL(2, \mathbb{Z}_p )$. Contemporary Mathematics 665 (2016) 41-56.
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[4] Other groups: A few examples. Graduate Studies in Mathematics 155 (2014) 355-408.
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[5] Variants. Graduate Studies in Mathematics 155 (2014) 127-158.
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[6] Introduction and motivation. Graduate Studies in Mathematics 155 (2014) 1-12.
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[7] The language of representation theory. Graduate Studies in Mathematics 155 (2014) 13-125.
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[8] Emmanuel Kowalski. An Introduction to the Representation Theory of Groups. Graduate Studies in Mathematics 155 (2014) MR MR3236265.
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[9] Abstract representation theory of compact groups. Graduate Studies in Mathematics 155 (2014) 269-318.
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[10] Linear representations of finite groups. Graduate Studies in Mathematics 155 (2014) 159-268.
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[11] Applications of representations of compact groups. Graduate Studies in Mathematics 155 (2014) 319-353.
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[12] Some useful facts. Graduate Studies in Mathematics 155 (2014) 409-420.
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[13] Other groups: A few examples. Graduate Studies in Mathematics 155 (2014) 355-408.
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[14] Variants. Graduate Studies in Mathematics 155 (2014) 127-158.
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[15] Introduction and motivation. Graduate Studies in Mathematics 155 (2014) 1-12.
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[16] The language of representation theory. Graduate Studies in Mathematics 155 (2014) 13-125.
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[17] Emmanuel Kowalski. An Introduction to the Representation Theory of Groups. Graduate Studies in Mathematics 155 (2014) MR MR3236265.
Book volume table of contents

[18] Abstract representation theory of compact groups. Graduate Studies in Mathematics 155 (2014) 269-318.
Book volume table of contents
View Article: PDF

[19] Linear representations of finite groups. Graduate Studies in Mathematics 155 (2014) 159-268.
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View Article: PDF

[20] Applications of representations of compact groups. Graduate Studies in Mathematics 155 (2014) 319-353.
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[21] Some useful facts. Graduate Studies in Mathematics 155 (2014) 409-420.
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[22] Howard Becker. Cocycles and continuity. Trans. Amer. Math. Soc. 365 (2013) 671-719.
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[23] Joachim Hilgert and Karl-Hermann Neeb. Positive definite spherical functions on Olshanskii domains . Trans. Amer. Math. Soc. 352 (2000) 1345-1380. MR 1473443.
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[24] Wojciech Bartoszek. Nonexpansive, $\mathcal T$-continuous antirepresentations have common fixed points . Proc. Amer. Math. Soc. 127 (1999) 1051-1055. MR 1469398.
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[25] H. D. Junghenn. Operator Semigroup Compactifications . Trans. Amer. Math. Soc. 348 (1996) 1051-1073. MR 1348864.
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[26] Paul R. Chernoff. Irreducible representations of infinite-dimensional transformation groups and Lie algebras. Bull. Amer. Math. Soc. 13 (1985) 46-48. MR 788389.
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[27] H. D. Junghenn. Distal compactifications of semigroups . Trans. Amer. Math. Soc. 274 (1982) 379-397. MR 670940.
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[28] Phullendu Das. Isotopy of abelian quasigroups . Proc. Amer. Math. Soc. 63 (1977) 317-323. MR 0498949.
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[29] Nicholas Macri. The continuity of Arens' product on the Stone-\v Cech compactification of semigroups . Trans. Amer. Math. Soc. 191 (1974) 185-193. MR 0382541.
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[30] Parfeny P. Saworotnow. Semigroups with positive definite structure . Proc. Amer. Math. Soc. 40 (1973) 421-425. MR 0320640.
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Results: 1 to 30 of 30 found      Go to page: 1

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