Linear Operators: General theory |
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Page 479
If T is in B ( X , Y ) , the second adjoint T * * : * * * → Y * * is an extension of T . If X
is reflexive then T * * = T . PROOF . Let x e X , y * e Y * . Then , ( T * * î ) y * = âT * y
* = ( T * y * ) = y * Tx = ( Tî ) y * . Q . E . D . 7 LEMMA . A linear operator T in B ...
If T is in B ( X , Y ) , the second adjoint T * * : * * * → Y * * is an extension of T . If X
is reflexive then T * * = T . PROOF . Let x e X , y * e Y * . Then , ( T * * î ) y * = âT * y
* = ( T * y * ) = y * Tx = ( Tî ) y * . Q . E . D . 7 LEMMA . A linear operator T in B ...
Page 612
For example , Weyl [ 2 ] showed that if T is a self adjoint operator ( which may
have void point spectrum ) on a separable Hilbert space , then a self adjoint
compact operator K may be found such that T + K has enough eigenvectors to
span the ...
For example , Weyl [ 2 ] showed that if T is a self adjoint operator ( which may
have void point spectrum ) on a separable Hilbert space , then a self adjoint
compact operator K may be found such that T + K has enough eigenvectors to
span the ...
Page 794
Self - adjoint extensions of the second kind of a symmetric operator . Izvestiya
Akad . Nauk SSSR 4 , 53 – 104 ( 1940 ) . ( Russian . English summary ) Math .
Rev . 2 , 104 ( 1941 ) . 8 . Spectral functions of a symmetric operator . Izvestiya
Akad .
Self - adjoint extensions of the second kind of a symmetric operator . Izvestiya
Akad . Nauk SSSR 4 , 53 – 104 ( 1940 ) . ( Russian . English summary ) Math .
Rev . 2 , 104 ( 1941 ) . 8 . Spectral functions of a symmetric operator . Izvestiya
Akad .
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Contents
Metric Spaces | 19 |
Convergence and Uniform Convergence of Generalized | 26 |
Exercises | 33 |
Copyright | |
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Acad algebra Amer analytic applied arbitrary assumed B-space Banach Banach spaces bounded called clear closed compact complex contains continuous functions converges convex Corollary countably additive defined DEFINITION denote dense determined differential disjoint Doklady Akad domain elements equation equivalent everywhere Exercise exists extension field finite follows function defined function f given Hence Hilbert space implies inequality integral interval isomorphism Lebesgue Lemma limit linear functional linear operator linear space mapping Math mean measure space metric space neighborhood norm operator positive problem Proc PROOF properties proved range regular respect Russian satisfies scalar seen semi-group separable sequence set function Show shown sphere statement subset Suppose Theorem theory topological space topology transformations u-integrable u-measurable uniformly union unique unit valued vector weak zero