Linear Operators: Spectral operators |
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Page 2209
This means that A = An ( A ) E ( A1 ) for sufficiently large integers n , from which it
clearly follows that A is in the uniformly closed algebra generated by B . Q . E . D .
15 COROLLARY . The weakly closed operator algebra generated by a o ...
This means that A = An ( A ) E ( A1 ) for sufficiently large integers n , from which it
clearly follows that A is in the uniformly closed algebra generated by B . Q . E . D .
15 COROLLARY . The weakly closed operator algebra generated by a o ...
Page 2300
Then , since the collection of finite sums of projections E ( Nn ; T ) is uniformly
bounded , it is clear from [ * ] that the collection of finite sums of projections ElMn ;
T + P ) , n 2 K , is uniformly bounded . Moreover , Lan ( E ( An ; T ) – Elun ; T + P )
...
Then , since the collection of finite sums of projections E ( Nn ; T ) is uniformly
bounded , it is clear from [ * ] that the collection of finite sums of projections ElMn ;
T + P ) , n 2 K , is uniformly bounded . Moreover , Lan ( E ( An ; T ) – Elun ; T + P )
...
Page 2361
Thus , as in the third paragraph of the proof of Theorem 6 , it is sufficient to show
that F * ( a ) = ( T + P ) * — 21 ) - 1f * is uniformly bounded for each fe So ( ( T + P )
* ) . However , in the course of the proof of Theorem 6 it was established that the ...
Thus , as in the third paragraph of the proof of Theorem 6 , it is sufficient to show
that F * ( a ) = ( T + P ) * — 21 ) - 1f * is uniformly bounded for each fe So ( ( T + P )
* ) . However , in the course of the proof of Theorem 6 it was established that the ...
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