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exact sequence : ウィキペディア英語版
exact sequence

An exact sequence is a concept in mathematics, especially in ring and module theory, homological algebra, as well as in differential geometry and group theory. An exact sequence is a sequence, either finite or infinite, of objects and morphisms between them such that the image of one morphism equals the kernel of the next.
==Definition==
In the context of group theory, a sequence
:G_0 \;\xrightarrow\; G_1 \;\xrightarrow\; G_2 \;\xrightarrow\; \cdots \;\xrightarrow\; G_n
of groups and group homomorphisms is called exact if the image of each homomorphism is equal to the kernel of the next:
:\mathrm(f_k) = \mathrm(f_)
Note that the sequence of groups and homomorphisms may be either finite or infinite.
A similar definition can be made for other algebraic structures. For example, one could have an exact sequence of vector spaces and linear maps, or of modules and module homomorphisms. More generally, the notion of an exact sequence makes sense in any category with kernels and cokernels.

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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