Linear Operators, Part 2 |
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Page 1021
preceding remarks that the final conclusion of the lemma is equivalent to the
statement that det ( A ) ( A - 1x , y ) = \ y | | | A | | - 1 ( n - 1 ) - ( n - 1 ) / 2 . Now ,
since W is unitary , det ( A ) = det ( W - 1 AW ) and ( A - 1x , y ) = ( A - 1 Won , y ) =
( W - 1 ...
preceding remarks that the final conclusion of the lemma is equivalent to the
statement that det ( A ) ( A - 1x , y ) = \ y | | | A | | - 1 ( n - 1 ) - ( n - 1 ) / 2 . Now ,
since W is unitary , det ( A ) = det ( W - 1 AW ) and ( A - 1x , y ) = ( A - 1 Won , y ) =
( W - 1 ...
Page 1756
Hence we find that if \ yl < r , fly ) = 0 , and statement ( i ) is fully proved . ( B ) The
uniqueness of the function V of the theorem is an evident consequence of
statement ( i ) . Moreover , statement ( i ) enables us to reduce the proof of the
existence ...
Hence we find that if \ yl < r , fly ) = 0 , and statement ( i ) is fully proved . ( B ) The
uniqueness of the function V of the theorem is an evident consequence of
statement ( i ) . Moreover , statement ( i ) enables us to reduce the proof of the
existence ...
Page 1771
... 0 . t > 0 , 62 , to PROOF . Statement ( i ) follows from the preceding theorem and
Theorem 6 . 23 . Statement ( ii ) follows from statement ( ii ) of the preceding
theorem , since a function satisfying the hypotheses of the present statement ...
... 0 . t > 0 , 62 , to PROOF . Statement ( i ) follows from the preceding theorem and
Theorem 6 . 23 . Statement ( ii ) follows from statement ( ii ) of the preceding
theorem , since a function satisfying the hypotheses of the present statement ...
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Contents
BAlgebras | 859 |
Commutative BAlgebras | 868 |
Commutative BAlgebras | 874 |
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