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・ Invariant basis number
・ Invariant convex cone
・ Invariant differential operator
・ Invariant estimator
・ Invariant extended Kalman filter
・ Invariant factor
・ Invariant factorization of LPDOs
・ Invariant manifold
・ Invariant mass
・ Invariant measure
・ Invariant of a binary form
・ Invariant polynomial
・ Invariant set postulate
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・ Invariant subspace
Invariant subspace problem
・ Invariant theory
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Invariant subspace problem : ウィキペディア英語版
Invariant subspace problem

In the field of mathematics known as functional analysis, the invariant subspace problem is a partially unresolved problem asking whether every bounded operator on a complex Banach space sends some non-trivial closed subspace to itself. The original form of the problem as posed by Paul Halmos was in the special case of polynomials with compact square. This was resolved affirmatively, for a more general class of polynomially compact operators, by Allen R. Bernstein and Abraham Robinson in 1966 (see Non-standard analysis#Invariant subspace problem for a summary of the proof).
==Precise statement==

More formally, the invariant subspace problem for a complex Banach space ''H'' of dimension > 1 is the question whether every bounded linear operator ''T'' : ''H'' → ''H'' has a non-trivial closed ''T''-invariant subspace (a closed linear subspace ''W'' of ''H'' which is different from and ''H'' such that ''T''(''W'') ⊆ ''W'').
To find a "counterexample" to the invariant subspace problem, means to answer affirmatively the following equivalent question: does there exist a bounded linear operator ''T'' : ''H'' → ''H'' such that for every non-zero vector ''x'', the vector space generated by the sequence is norm dense in ''H''? Such operators are called cyclic.

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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