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Titlebook: Generators and Relations for Discrete Groups; H. S. M. Coxeter,W. O. J. Moser Book 1957 Springer-Verlag Berlin Heidelberg 1957 Permutation

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書(shū)目名稱Generators and Relations for Discrete Groups
編輯H. S. M. Coxeter,W. O. J. Moser
視頻videohttp://file.papertrans.cn/383/382372/382372.mp4
叢書(shū)名稱Ergebnisse der Mathematik und Ihrer Grenzgebiete. 1. Folge
圖書(shū)封面Titlebook: Generators and Relations for Discrete Groups;  H. S. M. Coxeter,W. O. J. Moser Book 1957 Springer-Verlag Berlin Heidelberg 1957 Permutation
描述When we began to consider the scope of this book, we envisaged a catalogue supplying at least one abstract definition for any finitely- generated group that the reader might propose. But we soon realized that more or less arbitrary restrictions are necessary, because interesting groups are so numerous. For permutation groups of degree 8 or less (i. e., subgroups of e ), the reader cannot do better than consult the 8 tables of JosEPHINE BuRNS (1915), while keeping an eye open for misprints. Our own tables (on pages 134-143) deal with groups of low order, finiteandinfinite groups of congruent transformations, symmetric and alternating groups, linear fractional groups, and groups generated by reflections in real Euclidean space of any number of dimensions. The best substitute foramoreextensive catalogue is the description (in Chapter 2) of a method whereby the reader can easily work out his own abstract definition for almost any given finite group. This method is sufficiently mechanical for the use of an electronic computer. There is also a topological method (Chapter 3), suitable not only for groups of low order but also for some infinite groups. This involves choosing a set of gener
出版日期Book 1957
關(guān)鍵詞Permutation; algebra; finite group; transformation
版次1
doihttps://doi.org/10.1007/978-3-662-25739-5
isbn_softcover978-3-662-23654-3
isbn_ebook978-3-662-25739-5
copyrightSpringer-Verlag Berlin Heidelberg 1957
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https://doi.org/10.1007/978-3-319-20714-8es represent the elements of the group while certain sets of edges are associated with the generators. . (1878 a, b) proposed the use of colours to distinguish the edges associated with different generators (see . 1911, pp. 423–427 and the frontispiece). Instead, for the sake of easier printing, we
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https://doi.org/10.1057/9780230321359e it invariant. The symmetry operations (including the identity) of any figure clearly form a group: the . of the figure. A completely irregular figure has a symmetry group of order 1. The group of order 2 arises when the figure has bilateral symmetry, or when it is transformed into itself by a half
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https://doi.org/10.1057/9780230619548g generators and relations for S. can be carried over almost unchanged for a certain infinite group, first studied by . (1926); accordingly, we begin by describing this so-called braid group. The symmetric group (§ 6.2, p. 64) has a subgroup A., of index 2 (§ 6.3, p. 66), which is particularly inter
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Background and Outline of the Bookof the periods will make such a group finite. Cases where the number of generators is less than four have been considered in 4.31 and 4.32. We shall prove that the generators may always be represented by real affine reflections, thus preparing the ground for a complete enumeration of the finite grou
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