Linear Operators: Spectral Theory : Self Adjoint Operators in Hilbert Space, Volume 2 |
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Page 2144
It clearly preserves finite disjoint unions , takes complements into complements ,
is countably additive in the X topology of X * , and is bounded . It remains only to
show that A ( 0 ) A ( S ) = A ( od ) . It is seen , by using the above remarks , that for
...
It clearly preserves finite disjoint unions , takes complements into complements ,
is countably additive in the X topology of X * , and is bounded . It remains only to
show that A ( 0 ) A ( S ) = A ( od ) . It is seen , by using the above remarks , that for
...
Page 2203
The mapping E HO ( E ) is clearly an isomorphism between B and the Boolean
algebra of all open and closed subsets of 1 . These open and closed sets o ( E )
form a basis for the topology in 1 . To see this , note that sets of the form { a | | ( T ...
The mapping E HO ( E ) is clearly an isomorphism between B and the Boolean
algebra of all open and closed subsets of 1 . These open and closed sets o ( E )
form a basis for the topology in 1 . To see this , note that sets of the form { a | | ( T ...
Page 2278
If E * € & * we define m ( E * ) , the multiplicity of E * , to be the smallest cardinal
power of a set A of vectors such that E * X * is spanned in the X - topology by the
manifolds { N ( x * ) / 2 * € A } . The next lemma establishes the required continuity
...
If E * € & * we define m ( E * ) , the multiplicity of E * , to be the smallest cardinal
power of a set A of vectors such that E * X * is spanned in the X - topology by the
manifolds { N ( x * ) / 2 * € A } . The next lemma establishes the required continuity
...
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