洁净 发表于 2025-3-27 00:51:10
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Immunvermittelte ZNS-Erkrankungen,We discuss Gluck’s permutation lemma, which shows that in almost all cases, a primitive solvable permutation group has a regular orbit on the power set of the underlying set. This proof builds on the bounds we achieved in the previous chapters. We then look at some variations of Gluck’s result that will be used later in this book.POINT 发表于 2025-3-27 05:19:46
Praxisbuch neurologische PharmakotherapieIf . acts on a set ., a base for the action is defined to be a set of elements of . whose centralizers in . intersect trivially. The focus in this chapter is to prove a number of results, mostly by Seress and Espuelas, that give minimal base sizes for a number of different types of solvable group actions.平常 发表于 2025-3-27 11:51:37
Christiane Jäckel,Corinna WeberIn our first major application of large orbit theorems, we discuss Gluck’s conjecture for solvable groups. If .(.) is the largest character degree of the solvable group ., then it follows relatively easily from the results in Chap. 9 that .. We then discuss a recent improvement, using more large orbit theory, that ..除草剂 发表于 2025-3-27 14:01:29
https://doi.org/10.1007/978-3-531-91394-0In this chapter we see applications of several large orbit theorems to the study of blocks of solvable groups. The Brauer graph . of a block . of a solvable group is defined, and we prove an absolute bound on the diameter of .. Along the way we discuss some of the basics of blocks of solvable groups.perimenopause 发表于 2025-3-27 18:39:36
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Extraspecial Groups, Symplectic Modules, and Hall’s TheoremHere we look at extraspecial groups, their representations, and their connection to symplectic actions. We discuss in some detail Hall’s important result that characterizes p-groups for which every abelian characteristic subgroup is cyclic. These results will allow us to begin our study of quasiprimitive groups in the next chapters.coddle 发表于 2025-3-28 10:13:56
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Gluck’s Permutation LemmaWe discuss Gluck’s permutation lemma, which shows that in almost all cases, a primitive solvable permutation group has a regular orbit on the power set of the underlying set. This proof builds on the bounds we achieved in the previous chapters. We then look at some variations of Gluck’s result that will be used later in this book.