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・ Chang Lin
・ Chang Lo
・ Chang Man-yong
・ Chang Mi-hee
・ Chang Mi-kyung
・ Chang Mian
・ Chang Min Tat
・ Chang Ming-huang
・ Chang Moi
・ Chang Moo Kwan
・ Chang Myon
・ Chang Naga
・ Chang Nien-chung
・ Chang Noi
・ Chang Nuea
Chang number
・ Chang of Goryeo
・ Chang Peak
・ Chang Pei-chih
・ Chang Phueak, Chiang Mai
・ Chang Po-ya
・ Chang Qing
・ Chang Qu
・ Chang railway station
・ Chang San-cheng
・ Chang Sang
・ Chang Sheng-ford
・ Chang Shilei
・ Chang Shu-hao
・ Chang Shuhong


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Chang number : ウィキペディア英語版
Chang number
In mathematics, the Chang number of an irreducible representation of a simple complex Lie algebra is its dimension modulo 1 + ''h'', where ''h'' is the Coxeter number. Chang numbers are named after , who rediscovered an element of order ''h'' + 1 found by .
showed that there is a unique class of regular elements σ of order ''h'' + 1, in the complex points of the corresponding Chevalley group. He showed that the trace of σ on an irreducible representation is −1, 0, or +1, and if ''h'' + 1 is prime then the trace is congruent to the dimension mod ''h''+1. This implies that the dimension of an irreducible representation is always −1, 0, or +1 mod ''h'' + 1 whenever ''h'' + 1 is prime.
==Examples==
In particular, for the exceptional compact Lie groups ''G''2, F4, E6, E7, and E8 the number ''h'' + 1 = 7, 13, 13, 19, 31 is always prime, so the Chang number of an irreducible representation is always +1, 0, or −1.
For example, the first few irreducible representations of G2 (with Coxeter number ''h'' = 6) have dimensions 1, 7, 14, 27, 64, 77, 182, 189, 273, 286,...
These are congruent to 1, 0, 0, −1, 1, 0, 0, 0, 0, −1,... mod 7 = ''h'' + 1.

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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