Linear Operators: Spectral operators |
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Page 2137
Even though ( A ) is taken as a standing assumption throughout this section , it
will be indicated parenthetically in the statement of each lemma in the proof of
which it is used . 1 LEMMA ( A ) . If a , ß are complex numbers and x , y are
vectors in ...
Even though ( A ) is taken as a standing assumption throughout this section , it
will be indicated parenthetically in the statement of each lemma in the proof of
which it is used . 1 LEMMA ( A ) . If a , ß are complex numbers and x , y are
vectors in ...
Page 2396
It follows from this formula just as in the proof of Lemma 1 ( cf . the paragraph
following formula ( 14 ) ) that lim fu ( t ) = 0 , uniformly for ost < 0 . 141 - 00 дЄР +
Hence , by formula ( 24 ) of the proof of Lemma 3 , ĝu ( t ) ~ e - itu ; ģ ( t ) = - ime ...
It follows from this formula just as in the proof of Lemma 1 ( cf . the paragraph
following formula ( 14 ) ) that lim fu ( t ) = 0 , uniformly for ost < 0 . 141 - 00 дЄР +
Hence , by formula ( 24 ) of the proof of Lemma 3 , ĝu ( t ) ~ e - itu ; ģ ( t ) = - ime ...
Page 2479
regarded as a subspace of the larger space H ' of Lemma 15 , while equally
plainly H , may be regarded as the restriction to H , of the operator H of Lemma
15 ( cf . ( 33 ) – ( 36 ) above ) . Let Q be the projection of H ' onto its subspace Hı ,
and ...
regarded as a subspace of the larger space H ' of Lemma 15 , while equally
plainly H , may be regarded as the restriction to H , of the operator H of Lemma
15 ( cf . ( 33 ) – ( 36 ) above ) . Let Q be the projection of H ' onto its subspace Hı ,
and ...
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