Linear Operators: General theory |
From inside the book
Results 1-3 of 61
Page 12
The set Ā is the closure of A in this topology . € E AQ PROOF . Statements 10 ( b ) , ( d ) show that 0 , X € F , and 10 ( a ) shows that A B E F if A , B € F. It follows that any finite union of sets in F is in F. From 10 ( a ) ...
The set Ā is the closure of A in this topology . € E AQ PROOF . Statements 10 ( b ) , ( d ) show that 0 , X € F , and 10 ( a ) shows that A B E F if A , B € F. It follows that any finite union of sets in F is in F. From 10 ( a ) ...
Page 432
To see this , let m be an arbitrary integer ; since x ** is in the X * -closure of x ( A ) , there is an element zm € A such that 12. * ( zm ) -—- ~ ** ( ** ) < 1 / m , i 1 , Since A is weakly sequentially compact , a subsequence of ...
To see this , let m be an arbitrary integer ; since x ** is in the X * -closure of x ( A ) , there is an element zm € A such that 12. * ( zm ) -—- ~ ** ( ** ) < 1 / m , i 1 , Since A is weakly sequentially compact , a subsequence of ...
Page 511
2 A set AC B ( X , Y ) is compact in the weak operator topology if and only if it is closed in the weak operator topology and the weak closure of Ax is weakly compact for each x € X. A set AC B ( X , Y ) is compact in the strong ...
2 A set AC B ( X , Y ) is compact in the weak operator topology if and only if it is closed in the weak operator topology and the weak closure of Ax is weakly compact for each x € X. A set AC B ( X , Y ) is compact in the strong ...
What people are saying - Write a review
We haven't found any reviews in the usual places.
Contents
Preliminary Concepts | 1 |
B Topological Preliminaries | 10 |
quences | 26 |
Copyright | |
81 other sections not shown
Other editions - View all
Common terms and phrases
Akad algebra Amer analytic applied arbitrary assumed B-space Banach Banach spaces bounded called clear closed compact complex condition Consequently contains continuous functions converges convex Corollary countably additive defined DEFINITION denote dense determined differential disjoint element 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 meaning measure space metric neighborhood norm operator positive measure problem Proc Proof properties proved respect Russian satisfies scalar seen separable sequence set function Show shown sphere statement subset sufficient Suppose Theorem theory topological space topology u-measurable uniform uniformly unique unit valued vector weak weakly compact zero